Skylo Technologies, Inc.

United States of America

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2026 July 1
2026 June 1
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IPC Class
H04B 7/185 - Space-based or airborne stations 36
H04W 56/00 - Synchronisation arrangements 19
H04W 84/06 - Airborne or Satellite Networks 11
H04W 72/04 - Wireless resource allocation 9
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NICE Class
09 - Scientific and electric apparatus and instruments 2
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Pending 11
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1.

Management of Service Continuity of a Cell Area of a Satellite Network

      
Application Number 19235696
Status Pending
Filing Date 2025-06-12
First Publication Date 2026-07-30
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Desai, Soham Dhiren
  • Acker, Christopher
  • S R, Ashrith

Abstract

Apparatuses, methods, and systems for managing an interface of a satellite network between a wireless device and a service provider are disclosed. One method includes providing wireless satellite network coverage to a cell area, including determining mapping, wherein the mapping identifies a first serving wireless base station component, a second serving wireless base station component, a serving satellite, and a serving satellite access station for supporting wireless communication with a wireless device within the cell area, wherein the first wireless base station component and the second wireless base station component are mapped independently for each of the plurality of coverage cell areas, and wirelessly communicating with the wireless device within the cell area through the serving satellite access station, the first wireless base station component, the second wireless base station component, and the serving satellite.

IPC Classes  ?

2.

Managing a Connection of a Wireless Device to a Satellite Network

      
Application Number 19533200
Status Pending
Filing Date 2026-02-08
First Publication Date 2026-06-18
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Desai, Soham Dhiren
  • Agrawal, Meghna
  • S R, Ashrith
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for managing a connection of a wireless device to a satellite network are disclosed. One method includes maintaining, by a core network of the satellite network, a parameter list that includes at least an estimate of a location of the wireless device and an estimate of one or more satellite locations, estimating, by the core network, a probability of a mapping of a wireless connection between the wireless device and a base station supporting the satellite network based upon the parameter list, and initiating, by the core network, a procedure to communicate with the wireless device through the base station based on the estimated probability of the mapping of the wireless connection between the wireless device and the base station.

IPC Classes  ?

3.

Mobile Terminated Short Message Service for Non-terrestrial Network Short Message Service Delivery

      
Application Number 18892651
Status Pending
Filing Date 2024-09-23
First Publication Date 2026-03-26
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Radhakrishnan, Anand
  • Heinonen, Arvo
  • Carlson, Henry
  • Cho, Hyoungjun
  • Lewis, Vijay
  • Ahmad, Mohammad Furqan
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems of delivering Mobile Terminated Short Message Service in a Non-Terrestrial Network (NTN) are disclosed. One method includes receiving a mobile terminated forward short message request (TFR) from a short message service center (SMSC), wherein the TFR includes an SMS message and delivery information for a destination wireless device the delivery information associated with the TFR, comparing the delivery information with previously stored delivery information of a previously received TFR and determining whether the TFR includes a new SMS message or an expired SMS message, forwarding the TFR to the NTN core network when the delivery information is determined to be associated with a new SMS message, and discarding without forwarding subsequent retry TFRs received from the SMSC before receiving a mobile terminated forward short message answer from the NTN core network when the delivery information is determined to be associated with an expired SMS message.

IPC Classes  ?

  • H04W 4/14 - Short messaging services, e.g. short message service [SMS] or unstructured supplementary service data [USSD]
  • H04W 28/06 - Optimising, e.g. header compression, information sizing
  • H04W 84/06 - Airborne or Satellite Networks

4.

A MOBILE TERMINATED SHORT MESSAGE SERVICE FOR NON-TERRESTRIAL NETWORK SHORT MESSAGE SERVICE DELIVERY

      
Application Number US2025042103
Publication Number 2026/064045
Status In Force
Filing Date 2025-08-14
Publication Date 2026-03-26
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Radhakrishnan, Anand
  • Heinonen, Arvo
  • Carlson, Henry
  • Cho, Hyoungjun
  • Lewis, Vijay
  • Ahmad, Mohammad Furqan
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems of delivering Mobile Terminated Short Message Service in a Non-Terrestrial Network (NTN) are disclosed. One method includes receiving a mobile terminated forward short message request (TFR) from a short message service center (SMSC), wherein the TFR includes an SMS message and delivery information for a destination wireless device the delivery information associated with the TFR, comparing the delivery information with previously stored delivery information of a previously received TFR and determining whether the TFR includes a new SMS message or an expired SMS message, forwarding the TFR to the NTN core network when the delivery information is determined to be associated with a new SMS message, and discarding without forwarding subsequent retry TFRs received from the SMSC before receiving a mobile terminated forward short message answer from the NTN core network when the delivery information is determined to be associated with an expired SMS message.

IPC Classes  ?

  • H04W 4/14 - Short messaging services, e.g. short message service [SMS] or unstructured supplementary service data [USSD]
  • H04W 68/00 - User notification, e.g. alerting or paging, for incoming communication, change of service or the like
  • H04W 76/00 - Connection management
  • H04W 84/06 - Airborne or Satellite Networks
  • H04B 7/185 - Space-based or airborne stations

5.

Management of an Interface of a Satellite Network Between a Wireless Device and a Service Provider

      
Application Number 19087477
Status Pending
Filing Date 2025-03-22
First Publication Date 2026-02-12
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nandal, Arjun
  • Agrawal, Meghna
  • Desai, Soham Dhiren
  • Adem, Anteneh
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for managing an interface of a satellite network between a wireless device and a service provider are disclosed. One method includes receiving through a satellite link, by a service gateway of the satellite network, a wireless device trigger message from the wireless device, wherein the satellite network includes a base station and a satellite core network, and performing, by the service gateway of the satellite network, session establishment of the wireless device with the service provider when receiving the wireless device trigger message, including modifying the wireless device trigger message to include additional data required by the service provider.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04L 65/1073 - Registration or de-registration
  • H04L 65/1104 - Session initiation protocol [SIP]
  • H04L 65/65 - Network streaming protocols, e.g. real-time transport protocol [RTP] or real-time control protocol [RTCP]

6.

MANAGEMENT OF AN INTERFACE OF A SATELLITE NETWORK BETWEEN A WIRELESS DEVICE AND A SERVICE PROVIDER

      
Application Number US2025038763
Publication Number 2026/035435
Status In Force
Filing Date 2025-07-22
Publication Date 2026-02-12
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nandal, Arjun
  • Agrawal, Meghna
  • Desai, Soham Dhiren
  • Adem, Anteneh
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for managing an interface of a satellite network between a wireless device and a service provider are disclosed. One method includes receiving through a satellite link, by a service gateway of the satellite network, a wireless device trigger message from the wireless device, wherein the satellite network includes a base station and a satellite core network, and performing, by the service gateway of the satellite network, session establishment of the wireless device with the service provider when receiving the wireless device trigger message, including modifying the wireless device trigger message to include additional data required by the service provider.

IPC Classes  ?

  • G06F 16/2457 - Query processing with adaptation to user needs
  • H04B 7/185 - Space-based or airborne stations
  • H04W 4/60 - Subscription-based services using application servers or record carriers, e.g. SIM application toolkits
  • H04W 84/06 - Airborne or Satellite Networks

7.

Dynamic power assignment based on link qualities and total integrated transmission power

      
Application Number 18668402
Grant Number 12659886
Status In Force
Filing Date 2024-05-20
First Publication Date 2025-10-16
Grant Date 2026-06-16
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Desai, Soham Dhiren
  • Beyene, Yihenew Dagne
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems of dynamic power assignment based on link qualities and total integrated transmission power are disclosed. One method includes determining the total integrated transmission power of a base station, wherein the total integrated transmission power is integrated over time and frequency, and wherein the total integrated transmission power is dependent on an available amount of power of a satellite linked to the base station, transmitting reference signals, wherein the reference signals are transmitted at a higher power level than data signals, receiving link quality characterization information from a plurality of wireless devices based on reception of the reference signals by the plurality of wireless devices through the satellite, and assigning a transmission power associated with each of the plurality of wireless devices based upon the received link quality characterization information and the total integrated transmission power over the threshold period of time.

IPC Classes  ?

  • H04W 52/36 - Transmission power control [TPC] using constraints in the total amount of available transmission power with a discrete range or set of values, e.g. step size, ramping or offsets
  • H04W 52/24 - TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters
  • H04W 52/32 - TPC of broadcast or control channels

8.

Managing Satellite Network Demand for Emergency Services

      
Application Number 19231703
Status Pending
Filing Date 2025-06-09
First Publication Date 2025-09-25
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Desai, Soham Dhiren
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Sambangi, Sreedar
  • Lewis, Vijay
  • Subramanian, Sriram
  • Adem, Anteneh

Abstract

Apparatuses, methods, and systems for managing a network demand for emergency services are disclosed. One method includes adaptively reserving, by a base station of a satellite network, reserved PRACH (physical random access channel) preambles for a plurality of reserved services, broadcasting, by the base station, the configuration, wherein a wireless device receives the reserved PRACH preambles configuration, wherein the wireless device selects a reserved service from the plurality of reserved services and transmits a PRACH preamble from the reserved preambles, and transmitting, by the base station, a message grant to the wireless device in response to the PRACH preamble, wherein the wireless device transmits to the base station a response that includes data for the selected reserved service and an identifier of the wireless device, in response to the message grant from the base station.

IPC Classes  ?

  • H04W 74/0833 - Random access procedures, e.g. with 4-step access
  • H04B 7/185 - Space-based or airborne stations
  • H04W 4/90 - Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
  • H04W 28/26 - Resource reservation

9.

Method and satellite system for scheduling forward link resource allocations and return link resource allocations of a satellite link

      
Application Number 18401518
Grant Number 12732987
Status In Force
Filing Date 2023-12-31
First Publication Date 2025-07-03
Grant Date 2026-09-08
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Desai, Soham Dhiren
  • Nuttall, Andrew
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems of scheduling wireless communication through a satellite link are disclosed. One method includes determining a forward link quality of a forward link and a return link quality of a return link, determining a forward data rate requirement for a forward timing interval and a return data rate requirement for a return timing interval, determining a modulation and coding scheme (MCS) of the forward link based on the forward link quality, the return link quality, the forward data rate requirement, the return data rate requirement, a MCS of the return link, the forward timing, and the return timing interval, scheduling forward link resource allocations and return link resource allocations based on the MCS of the forward link, the MCS of the return link, forward data rate requirement and a return data rate requirement, the forward timing interval, and the return timing interval.

IPC Classes  ?

  • H04W 72/50 - Allocation or scheduling criteria for wireless resources
  • H04L 1/00 - Arrangements for detecting or preventing errors in the information received
  • H04W 72/04 - Wireless resource allocation
  • H04W 72/12 - Wireless traffic scheduling
  • H04L 5/14 - Two-way operation using the same type of signal, i.e. duplex
  • H04L 47/78 - Architectures of resource allocation
  • H04W 72/54 - Allocation or scheduling criteria for wireless resources based on quality criteria
  • H04W 76/15 - Setup of multiple wireless link connections
  • H04W 84/06 - Airborne or Satellite Networks

10.

Base Station Management of a Connection of a Wireless Device to a Satellite Network

      
Application Number 18383202
Status Pending
Filing Date 2023-10-24
First Publication Date 2025-04-24
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Desai, Soham Dhiren
  • Agrawal, Meghna
  • Acker, Christopher

Abstract

Apparatuses, methods, and systems of a base station of a satellite network managing a connection of a wireless device to the satellite network are disclosed. One method includes broadcasting location information of a satellite associated with the base station, broadcasting an effective communication range for wireless communications between the base station and the wireless device of a satellite beam, wherein the wireless device calculates a distance between the wireless device and a reference point associated with the satellite based on the broadcast location information of the satellite and a location of the wireless device, wherein the wireless device compares the calculated distance with the broadcast effective communication range, and determines a wireless signaling procedure to establish or maintain a wireless connection with the satellite network based on the comparison. The method further includes receiving, by the base station, the wireless signaling procedure from the wireless device.

IPC Classes  ?

11.

Managing a connection of a wireless device to a satellite network

      
Application Number 18378804
Grant Number 12574107
Status In Force
Filing Date 2023-10-11
First Publication Date 2025-04-17
Grant Date 2026-03-10
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Desai, Soham Dhiren
  • Agrawal, Meghna
  • S R, Ashrith
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for managing a connection of a wireless device to a satellite network are disclosed. One method includes maintaining, by a core network of the satellite network, a parameter list that includes at least an estimate of a location of the wireless device and an estimate of one or more satellite locations, estimating, by the core network, a probability of a mapping of a wireless connection between the wireless device and a base station supporting the satellite network based upon the parameter list, and initiating, by the core network, a procedure to communicate with the wireless device through the base station based on the estimated probability of the mapping of the wireless connection between the wireless device and the base station.

IPC Classes  ?

12.

Coordinated Satellite and Terrestrial Base Station Resource Block Allocation

      
Application Number 18920197
Status Pending
Filing Date 2024-10-18
First Publication Date 2025-02-13
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Acker, Christopher
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinated satellite and terrestrial base station resource block allocation are disclosed. One method includes receiving, by a controller, a data demand of a terrestrial network of a terrestrial base station and a data demand of a satellite network of a satellite base station, generating, by the controller, a communication schedule comprising satellite resource block information of the satellite base station, wherein the satellite resource block information indicates time and frequency blocks of the communication schedule that the satellite base station is only allowed to use for wireless communication, wherein the time and frequency blocks of the terrestrial resource block information of the terrestrial base station do not overlap with the time and frequency blocks of the satellite resource block information, and allocating, by the satellite base station, radio frequency (RF) resources based on the satellite resource block information.

IPC Classes  ?

  • H04W 72/20 - Control channels or signalling for resource management
  • H04W 16/14 - Spectrum sharing arrangements
  • H04W 72/044 - Wireless resource allocation based on the type of the allocated resource
  • H04W 84/06 - Airborne or Satellite Networks

13.

Adaptive Satellite Wireless Communication Parameter Selections

      
Application Number 18920936
Status Pending
Filing Date 2024-10-20
First Publication Date 2025-02-06
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for adaptive satellite wireless communication parameter selections are disclosed. One method includes predicting, by a base station, characteristics of a communication channel between the base station and a wireless hub, wherein a satellite is located within the communication channel between the base station and the wireless hub, and selecting, by the base station, wireless communication parameter selections including at least an MCS (modulation and coding scheme) based on the predicted characteristics of the communication channel.

IPC Classes  ?

  • H04L 1/00 - Arrangements for detecting or preventing errors in the information received
  • H04L 1/08 - Arrangements for detecting or preventing errors in the information received by repeating transmission, e.g. Verdan system
  • H04W 80/00 - Wireless network protocols or protocol adaptations to wireless operation
  • H04W 84/06 - Airborne or Satellite Networks

14.

Control of states of a wireless device for connection to a satellite network

      
Application Number 18201935
Grant Number 12490193
Status In Force
Filing Date 2023-05-25
First Publication Date 2024-11-28
Grant Date 2025-12-02
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Desai, Soham Dhiren
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for managing an operational state of a wireless device that connects to a satellite wireless network are disclosed. One method includes supporting, by a base station, a wireless connection of the wireless device through a satellite to the satellite wireless network, determining that the wireless device is in a dormant state based on an indication that the wireless device supports the dormant state and based on signaling attempts to the wireless device, controlling, by the base station, information wirelessly communicated to the wireless device based on whether the wireless device is in the dormant state, and buffering of information for the wireless device based on whether the wireless device is in the dormant state.

IPC Classes  ?

  • H04W 52/02 - Power saving arrangements
  • H04W 76/28 - Discontinuous transmission [DTX]Discontinuous reception [DRX]
  • H04W 76/38 - Connection release triggered by timers

15.

Time Delay Estimations Between Wireless Nodes

      
Application Number 18765276
Status Pending
Filing Date 2024-07-07
First Publication Date 2024-10-31
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes determining a first time propagation delay between the first node and the second node based on location of the second node and the kinematic information of a third node, receiving, by the second node, a packet containing a timestamp representing a transmit time of the packet, determining a second time propagation delay between the first node and the second node based upon the difference between the reception time of the packet, and the first time stamp included within the packet, transmitting, by a second node a TX packet after a holding delay based on the first propagation delay and the second propagation delay.

IPC Classes  ?

16.

Multicast Message that includes Responses to Radio Resource Requests of Wireless Devices of a Multicast Group

      
Application Number 18609185
Status Pending
Filing Date 2024-03-19
First Publication Date 2024-10-24
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Desai, Soham Dhiren
  • Adem, Anteneh
  • Radhakrishnan, Anand
  • Beyene, Yihenew Dagne

Abstract

Apparatuses, methods, and systems of a base station that multicasts a multicast message that includes responses to radio resource requests of wireless devices of a multicast group are disclosed. One method includes receiving, by the wireless satellite base station, a plurality of radio resource requests from a plurality of wireless devices corresponding with preambles received during an access window, forming, by the wireless satellite base station, a multicast group from the plurality of wireless devices based on a timing of receiving the radio resource requests, and a type of response, wherein timing of each radio resource request is based on a timing of the access window utilized by a corresponding preamble, and multicasting, by the wireless satellite base station, a multicast message with a response to the radio resource request to the wireless devices of the multicast group.

IPC Classes  ?

  • H04W 72/30 - Resource management for broadcast services
  • H04L 5/00 - Arrangements affording multiple use of the transmission path
  • H04W 72/0446 - Resources in time domain, e.g. slots or frames
  • H04W 84/06 - Airborne or Satellite Networks

17.

Managing satellite network demand for emergency services

      
Application Number 18126514
Grant Number 12356465
Status In Force
Filing Date 2023-03-27
First Publication Date 2024-10-03
Grant Date 2025-07-08
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Desai, Soham Dhiren
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Sambangi, Sreedar
  • Lewis, Vijay
  • Subramanian, Sriram
  • Adem, Anteneh

Abstract

Apparatuses, methods, and systems for managing a network demand for emergency services are disclosed. One method includes adaptively reserving, by a base station of a satellite network, reserved PRACH (physical random access channel) preambles for a plurality of reserved services, broadcasting, by the base station, the configuration, wherein a wireless device receives the reserved PRACH preambles configuration, wherein the wireless device selects a reserved service from the plurality of reserved services and transmits a PRACH preamble from the reserved preambles, and transmitting, by the base station, a message grant to the wireless device in response to the PRACH preamble, wherein the wireless device transmits to the base station a response that includes the selected reserved service from the plurality of reserved services in response to the message grant from the base station.

IPC Classes  ?

  • H04W 74/0833 - Random access procedures, e.g. with 4-step access
  • H04B 7/185 - Space-based or airborne stations
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04W 4/90 - Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
  • H04W 28/26 - Resource reservation

18.

Hub communication with a satellite network or a terrestrial network

      
Application Number 18607664
Grant Number 12284026
Status In Force
Filing Date 2024-03-18
First Publication Date 2024-07-04
Grant Date 2025-04-22
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Noah, Moshe
  • Lewis, Vijay
  • Agrawal, Meghna
  • Ruttik, Kalle
  • Beyene, Yihenew Dagne
  • Winata, Barry

Abstract

Apparatuses, methods, and systems of hub communication with a satellite network or a terrestrial network are disclosed. One method includes determining a propagation delay between a wireless communication device and a base station of a satellite network, adjusting, by the wireless communication device, a timing offset between transmit and receive radio frames at the wireless communication device based on whether the satellite network or a terrestrial network is selected, and based at least on the propagation delay, configuring air interface communication protocol timer values including at least a wait time for a response based on at least a frame offset between uplink and downlink frames at the base station of the satellite network, and communicating, by the wireless communication device, with the base station of the satellite network when the satellite network is selected, and with a base station of the terrestrial network when the terrestrial network is selected.

IPC Classes  ?

19.

Wireless device activation tracking of a wireless satellite service

      
Application Number 17990798
Grant Number 12407404
Status In Force
Filing Date 2022-11-21
First Publication Date 2024-05-23
Grant Date 2025-09-02
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Milne, Ian
  • Iyengar, Prasanna Venkatesan Srinivasan
  • Panwar, Birender
  • Shankar, Prem
  • Lewis, Vijay
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Radhakrishnan, Anand

Abstract

Apparatuses, methods, and systems for operating a wireless satellite service are disclosed. One method includes maintaining, by a satellite service server, a database of an activation status of each of a plurality of subscriber devices as provided by a plurality of terrestrial service providers, receiving, by a satellite network, a request from a wireless device to access the wireless satellite service through a satellite link, wherein the satellite network is electronically connected to the satellite service server, querying, by the satellite network, the satellite service server to confirm whether the wireless device requesting access to the wireless satellite service is a subscriber device that is activated, providing, by the satellite service server, the activation status of the wireless device to the satellite network, and performing, by the satellite network, a wireless device attachment process with a one of the plurality terrestrial service providers based upon the activation status.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 60/00 - Affiliation to network, e.g. registrationTerminating affiliation with the network, e.g. de-registration

20.

Hub communication with a satellite network or a terrestrial network

      
Application Number 18137523
Grant Number 11990983
Status In Force
Filing Date 2023-04-21
First Publication Date 2024-05-21
Grant Date 2024-05-21
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Noah, Moshe
  • Lewis, Vijay
  • Agrawal, Meghna
  • Ruttik, Kalle
  • Beyene, Yihenew Dagne
  • Winata, Barry

Abstract

Apparatuses, methods, and systems of hub communication with a satellite network or a terrestrial network are disclosed. One method includes detecting presence of the satellite network, detecting, by the hub, presence of a terrestrial network, selecting to connect to one of the satellite network or the terrestrial network based on a priority ruleset, estimating a propagation delay between the hub and a base station of the satellite network when the satellite network is selected, adjusting a timing offset between transmit and receive radio frames at the hub based on whether the satellite network or the terrestrial network is selected, and based at least on the propagation delay, and communicating with the base station of the satellite network or a base station of the terrestrial network.

IPC Classes  ?

21.

Grouping wireless communication resources and assigning datums to the groupings based on characteristics of the datums

      
Application Number 17939039
Grant Number 12284647
Status In Force
Filing Date 2022-09-07
First Publication Date 2024-03-07
Grant Date 2025-04-22
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Acker, Christopher

Abstract

Apparatuses, methods, and systems for wireless communication are disclosed. One method includes dividing available wireless communications resources into a plurality of groups, connecting, by a wireless device, to a base station through a wireless satellite link, allocating, by the base station, a set of the plurality of groups to the wireless device, receiving, by the wireless device, a datum from a data source, assigning, by the wireless device, the datum to one or more of the allocated groups based on characteristics of the datum, and wirelessly communicating, by the wireless device, the datum to the base station according to the assigned one of the plurality of groups.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 72/02 - Selection of wireless resources by user or terminal
  • H04W 72/1268 - Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows of uplink data flows
  • H04W 76/10 - Connection setup

22.

Managing a User Equipment Connection to a Wireless Network

      
Application Number 18106535
Status Pending
Filing Date 2023-02-07
First Publication Date 2024-02-01
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Desai, Soham Dhiren
  • Radhakrishnan, Anand
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for managing a User Equipment (UE) connection to a wireless network are disclosed. One method includes attaching, by a core network, the UE to the wireless network, storing, by the core network, at least a first subset of an attach context and a UE operational data set, wherein the UE stores at least a second subset of the attach context in memory and network operational data sets, wherein the UE transmits packets using the second subset of the attach context and the network operational data sets. The method further comprises receiving, by the core network, the packets from the UE using the first subset of the attach context, and urging by the core network the first subset of the attach context based on the UE network operational data set.

IPC Classes  ?

  • H04W 76/16 - Setup of multiple wireless link connections involving different core network technologies, e.g. a packet-switched [PS] bearer in combination with a circuit-switched [CS] bearer

23.

Simultaneously broadcasting acknowledgements of reception of uplink wireless communication

      
Application Number 18369266
Grant Number 12526825
Status In Force
Filing Date 2023-09-18
First Publication Date 2024-01-04
Grant Date 2026-01-13
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for communicating through a wireless link are disclosed. A method includes scheduling, by a server, communication between a base station and a plurality of user devices, receiving, by the base station, the scheduled communication, providing, to each user device, a data profile that includes a periodicity, an offset, and a carrier frequency based on the scheduled communication, receiving, by the base station, uplink wireless communication from each of the plurality of user devices according to the data profile of each of the user devices and according to the scheduled communication, and simultaneously broadcasting, by the base station, acknowledgements of reception of uplink wireless communication from each of the plurality of user devices.

IPC Classes  ?

  • H04W 72/30 - Resource management for broadcast services
  • H04B 7/185 - Space-based or airborne stations
  • H04L 5/00 - Arrangements affording multiple use of the transmission path
  • H04W 72/0446 - Resources in time domain, e.g. slots or frames
  • H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA

24.

ASSIGNMENT OF SATELLITE BEAM ALLOCATIONS FOR THE SCHEDULED WIRELESS COMMUNICATION BETWEEN WIRELESS DEVICES AND A BASE STATION

      
Application Number US2023063733
Publication Number 2023/235641
Status In Force
Filing Date 2023-03-03
Publication Date 2023-12-07
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for a satellite wireless communication system are disclosed. One system includes a base station, a satellite, a beam management controller, and a plurality of wireless devices. The base station is configured to wirelessly communicate according to a schedule between the base station and each of the plurality of wireless devices within a scheduling frame. The satellite is operative to form a plurality of beams between the satellite and the wireless devices and support a wireless satellite link between the base station and the wireless devices through the plurality of beams. The beam management controller is operative to assign beam allocations for the scheduled wireless communication between each of the wireless devices and the base station that is time aligned with the scheduling frame, wherein each of the beam allocations includes an assignment to at least one of the plurality of beams.

IPC Classes  ?

25.

Coordinated satellite and terrestrial base station resource block suppression

      
Application Number 17734082
Grant Number 12160864
Status In Force
Filing Date 2022-05-01
First Publication Date 2023-11-02
Grant Date 2024-12-03
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Acker, Christopher
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinating satellite and terrestrial base station resource block suppression are disclosed. One method includes receiving, by a controller, a data demand of a terrestrial network of a terrestrial base station and a data demand of a satellite network of a satellite base station, generating a communication schedule which contains terrestrial resource block suppression information and satellite resource block suppression information, wherein the terrestrial resource block suppression information indicates time and frequency blocks of the communication schedule that the terrestrial base station is to suppress wireless communications, and the satellite resource block suppression information indicates time and frequency blocks of the communication schedule that the satellite base station is to suppress wireless communications, allocating, by the terrestrial base station, resources based on the terrestrial resource block suppression information, and allocating, by the satellite base station, resources based on the satellite resource block suppression information.

IPC Classes  ?

  • H04W 4/00 - Services specially adapted for wireless communication networksFacilities therefor
  • H04W 16/14 - Spectrum sharing arrangements
  • H04W 72/044 - Wireless resource allocation based on the type of the allocated resource
  • H04W 72/20 - Control channels or signalling for resource management
  • H04W 84/06 - Airborne or Satellite Networks

26.

Assignment of satellite beam allocations for the scheduled wireless communication between wireless devices and a base station

      
Application Number 17849649
Grant Number 11799544
Status In Force
Filing Date 2022-06-26
First Publication Date 2023-10-24
Grant Date 2023-10-24
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for a satellite wireless communication system are disclosed. One system includes a base station, a satellite, a beam management controller, and a plurality of wireless devices. The base station is configured to wirelessly communicate according to a schedule between the base station and each of the plurality of wireless devices within a scheduling frame. The satellite is operative to form a plurality of beams between the satellite and the wireless devices and support a wireless satellite link between the base station and the wireless devices through the plurality of beams. The beam management controller is operative to assign beam allocations for the scheduled wireless communication between each of the wireless devices and the base station that is time aligned with the scheduling frame, wherein each of the beam allocations includes an assignment to at least one of the plurality of beams.

IPC Classes  ?

27.

ADAPTIVE SATELLITE WIRELESS COMMUNICATION PARAMETER SELECTIONS

      
Application Number US2023063732
Publication Number 2023/196719
Status In Force
Filing Date 2023-03-03
Publication Date 2023-10-12
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for adaptive satellite wireless communication parameter selections are disclosed. One method includes predicting, by a base station, characteristics of a communication channel between the base station and a wireless hub, wherein a satellite is located within the communication channel between the base station and the wireless hub, and selecting, by the base station, wireless communication parameter selections including at least an MCS (modulation and coding scheme) based on the predicted characteristics of the communication channel.

IPC Classes  ?

  • H04B 7/216 - Code-division or spread-spectrum multiple access
  • H04L 1/00 - Arrangements for detecting or preventing errors in the information received
  • H04W 72/20 - Control channels or signalling for resource management
  • H04B 7/185 - Space-based or airborne stations
  • H04L 27/26 - Systems using multi-frequency codes

28.

Transmission management

      
Application Number 18208284
Grant Number 11963123
Status In Force
Filing Date 2023-06-11
First Publication Date 2023-10-12
Grant Date 2024-04-16
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Ruttik, Kalle
  • Lehtinen, Keijo
  • Beyene, Yihenew
  • Keskinen, Marko
  • Jantti, Riku

Abstract

The invention relates to a solution for determining an allowable round trip time for a communication between a base station and a terminal device served by the base station in an asynchronous communication system, At least some aspects of the solution relate to a method performed by a controller, the method comprises: determining round trip times of terminal devices served by the base station; selecting a maximum round trip time among the determined round trip times of the terminal devices served by the base station as the allowable round trip time; and delivering the selected allowable round trip time to the base station. The solution also relates to applying the determined round trip time by a base station and a terminal device as well as to a system comprising the mentioned entities and to computer program products.

IPC Classes  ?

29.

Adaptive satellite wireless communication parameter selections

      
Application Number 17712149
Grant Number 12149345
Status In Force
Filing Date 2022-04-03
First Publication Date 2023-10-05
Grant Date 2024-11-19
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for adaptive satellite wireless communication parameter selections are disclosed. One method includes predicting, by a base station, characteristics of a communication channel between the base station and a wireless hub, wherein a satellite is located within the communication channel between the base station and the wireless hub, and selecting, by the base station, wireless communication parameter selections including at least an MCS (modulation and coding scheme) based on the predicted characteristics of the communication channel.

IPC Classes  ?

  • H04L 1/00 - Arrangements for detecting or preventing errors in the information received
  • H04L 1/08 - Arrangements for detecting or preventing errors in the information received by repeating transmission, e.g. Verdan system
  • H04W 80/00 - Wireless network protocols or protocol adaptations to wireless operation
  • H04W 84/06 - Airborne or Satellite Networks

30.

Configuring multicast communication

      
Application Number 18135143
Grant Number 12119951
Status In Force
Filing Date 2023-04-15
First Publication Date 2023-08-10
Grant Date 2024-10-15
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio

Abstract

Apparatuses, methods, and systems for configuring multicast communication, are disclosed. One method includes generating, by a system platform, a multicast scheduling control packet based upon a distribution of a plurality of hubs, communicating, by the system platform, to a wireless communication base station the multicast scheduling control packet, generating, by the wireless communication base station, a plurality of multicast channel configurations based upon the multicast scheduling control packet, communicating, by the system platform, the multicast scheduling control packet to a wireless communication hub, wherein the wireless communication hub is one of the plurality of hubs, selecting, by the wireless communication hub, specific multicast channels from the plurality of multicast channel configurations, to receive specific multicast data based upon a condition of the hub and the multicast scheduling control packet, and receiving, by the wireless communication hub, multicast data through the selected specific multicast channel configurations.

IPC Classes  ?

  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA

31.

Dynamically estimating a propagation time between a first node and a second node of a wireless network

      
Application Number 18129868
Grant Number 11855758
Status In Force
Filing Date 2023-04-02
First Publication Date 2023-07-27
Grant Date 2023-12-26
Owner Skylo Technologies, Inc (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes receiving, by the second node, from the first node a packet containing a first timestamp representing the transmit time of the packet, receiving, by the second node, from a local time source, a second timestamp corresponding with a time of reception of the first timestamp received from the first node, calculating a time difference between the first timestamp and the second timestamp, storing the time difference between the first timestamp and the second timestamp, calculating a predictive model for predicting the propagation time based the time difference between the first timestamp and the second timestamp, and estimating the propagation time between the first node and the second node at a time by querying the predictive model with the time.

IPC Classes  ?

32.

Connecting a wireless device across multiple wireless networks

      
Application Number 18125288
Grant Number 12120603
Status In Force
Filing Date 2023-03-23
First Publication Date 2023-07-13
Grant Date 2024-10-15
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for connecting a wireless device across multiple wireless networks are disclosed. One system includes a state machine and a router. The state machine operates to maintain a network availability of each of a plurality of wireless networks for a wireless device, wherein each of the plurality of wireless networks include network characteristics. The router operates to select a one of the plurality of wireless networks based on the network availability and the network characteristics as maintained by the state machine, process data packets according to the selected available wireless network based on the network characteristics of the selected available wireless network, and route the processed data packets to the wireless device through the selected one of the plurality of wireless networks.

IPC Classes  ?

  • H04W 48/18 - Selecting a network or a communication service
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing
  • H04W 40/06 - Communication route or path selection, e.g. power-based or shortest path routing based on wireless node resources based on characteristics of available antennas
  • H04W 48/16 - DiscoveringProcessing access restriction or access information
  • H04W 88/16 - Gateway arrangements

33.

Providing functional models to hubs to enhance operation of the hubs

      
Application Number 18116352
Grant Number 11864064
Status In Force
Filing Date 2023-03-02
First Publication Date 2023-06-29
Grant Date 2024-01-02
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Acker, Christopher
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for providing function models to hubs, are disclosed. One method includes sensing, by a hub, local data, collecting the local data from the hub, creating function models based on the collected local data and non-local data collected from non-local data sources, dynamically creating non-local inputs based upon the local data from the hub and the non-local data collected from non-local data sources, transmitting the created function models to the plurality of hubs at a first timing, and dynamically transmitting the non-local inputs to each of the plurality of hubs at a second timing, and applying, by the hub, current locally sensed data and the dynamically transmitted non-local inputs to the created function models.

IPC Classes  ?

  • H04W 4/00 - Services specially adapted for wireless communication networksFacilities therefor
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04L 41/0806 - Configuration setting for initial configuration or provisioning, e.g. plug-and-play

34.

Coordinated transmissions over a transient roving wireless communication channel

      
Application Number 18115819
Grant Number 11758604
Status In Force
Filing Date 2023-03-01
First Publication Date 2023-06-29
Grant Date 2023-09-12
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Lewis, Vijay
  • Agrawal, Meghna
  • Lehtinen, Keijo Tapio
  • Beyene, Yihenew Dagne
  • Acker, Christopher
  • Salim, Rounak
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for coordinating wireless communication are disclosed. One method includes generating, by a wireless radiator, a plurality of selectable directional wireless communication links capable of providing connectivity across a plurality of cells, wherein each of the cells is spatially different from other cells, and wherein each of the cells covers a cell area, wherein a plurality of hubs are located within the cell area, generating, by a controller, a cell map, wherein the cell map maps which of the directional wireless links, which of the plurality cells, and which of the hubs are active as a function of time, thereby supporting a wireless communication link between the base station and the hubs of the cell area corresponding with the active directional wireless link, and providing the cell map to the base station and the hubs of each of the cells.

IPC Classes  ?

35.

Coordinated satellite and terrestrial channel utilization

      
Application Number 18098871
Grant Number 11863292
Status In Force
Filing Date 2023-01-19
First Publication Date 2023-05-25
Grant Date 2024-01-02
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinated satellite and terrestrial channel utilization, are disclosed. One wireless system includes one or more controllers. For an embodiment, the one or more controllers are operative to (or configured to) determine one or more communication delays for each base station of a plurality of base stations based upon a maximum propagation delay between each base station and one or more of a plurality of hubs, generate a channel sharing map that includes a timing of communication between each base station and the one or more of the plurality of hubs, wherein each of the plurality of base stations operates to time wireless communication with the plurality of hubs based on the channel sharing map, and the one or more communication delays of the base station.

IPC Classes  ?

36.

CONNECTING A WIRELESS HUB ACROSS MULTIPLE WIRELESS NETWORKS

      
Application Number US2022075494
Publication Number 2023/069801
Status In Force
Filing Date 2022-08-26
Publication Date 2023-04-27
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for connecting a wireless hub across multiple wireless networks are disclosed. One system includes a state machine and a router. The state machine operates to maintain a network availability of each of a plurality of wireless networks for a hub, wherein each of the plurality of wireless networks include network characteristics, wherein the network characteristics include at least IP and non-IP protocols, satellite and non-satellite communication channels, and a connection status. The router operative to select a one of the plurality of wireless networks based on the network availability and the network characteristics as maintained by the state machine, process data packets according to the selected available wireless network based on the network characteristics of the selected available wireless network, and route the processed data packets to the hub through the selected one of the plurality of wireless networks.

IPC Classes  ?

  • H04L 69/18 - Multiprotocol handlers, e.g. single devices capable of handling multiple protocols
  • H04W 76/15 - Setup of multiple wireless link connections
  • H04W 72/12 - Wireless traffic scheduling

37.

Connecting a wireless hub across multiple wireless networks

      
Application Number 17503667
Grant Number 11690006
Status In Force
Filing Date 2021-10-18
First Publication Date 2023-04-20
Grant Date 2023-06-27
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for connecting a wireless hub across multiple wireless networks are disclosed. One system includes a state machine and a router. The state machine operates to maintain a network availability of each of a plurality of wireless networks for a hub, wherein each of the plurality of wireless networks include network characteristics, wherein the network characteristics include at least IP and non-IP protocols, satellite and non-satellite communication channels, and a connection status. The router operative to select a one of the plurality of wireless networks based on the network availability and the network characteristics as maintained by the state machine, process data packets according to the selected available wireless network based on the network characteristics of the selected available wireless network, and route the processed data packets to the hub through the selected one of the plurality of wireless networks.

IPC Classes  ?

  • H04W 48/18 - Selecting a network or a communication service
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing
  • H04W 88/16 - Gateway arrangements

38.

Dynamically controlling a local buffer of a modem of a wireless device

      
Application Number 18079294
Grant Number 12445899
Status In Force
Filing Date 2022-12-12
First Publication Date 2023-04-13
Grant Date 2025-10-14
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio
  • Lewis, Vijay
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically controlling a local buffer of a modem of a wireless device are disclosed. One method includes receiving transmission packets in the local buffer of the modem of the wireless device for wireless transmission to a receiving device, purging a transmission packet from the local buffer after receiving an acknowledgement of reception of the transmission packet from the receiving device, and requesting acknowledgement from the receiving device when a queue of the transmission packets within the local buffer exceeds a threshold level, wherein a time delay is introduced before the requesting of the acknowledgement, wherein the time delay is based at least on a propagation delay of the wireless transmission between the wireless device and the receiving device.

IPC Classes  ?

  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04L 1/1607 - Details of the supervisory signal
  • H04L 1/18 - Automatic repetition systems, e.g. Van Duuren systems
  • H04L 1/1867 - Arrangements specially adapted for the transmitter end
  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04L 49/90 - Buffering arrangements
  • H04L 49/9057 - Arrangements for supporting packet reassembly or resequencing

39.

AUTOMATED SENSOR INTEGRATION AND DATA COLLECTION

      
Application Number US2022075492
Publication Number 2023/049600
Status In Force
Filing Date 2022-08-26
Publication Date 2023-03-30
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Sambangi, Sreedhar
  • Patel, Ankit Kanubhai
  • Gaikwad, Nitin
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for automated sensor integration and data collection. One method includes managing, by a platform server, a sensor library that includes sensor information for a plurality of sensors, receiving, by the platform server, from a user, a selection of a sensor from the sensor library and a selection of an associated datum, generating, by the platform server, a configuration based on the selected sensor and the associated datum, communicating, by the platform server, the configuration to a computing device over a wireless link, receiving, by the computing device, the configuration, updating, by the computing device, with the configuration, and transmitting and receiving, by the computing device, data with the selected sensor based on the configuration.

IPC Classes  ?

  • H04W 4/38 - Services specially adapted for particular environments, situations or purposes for collecting sensor information

40.

Automated sensor integration and data collection

      
Application Number 17482988
Grant Number 11997759
Status In Force
Filing Date 2021-09-23
First Publication Date 2023-03-23
Grant Date 2024-05-28
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Sambangi, Sreedhar
  • Patel, Ankit Kanubhai
  • Gaikwad, Nitin
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for automated sensor integration and data collection. One method includes managing, by a platform server, a sensor library that includes sensor information for a plurality of sensors, receiving, by the platform server, from a user, a selection of a sensor from the sensor library and a selection of an associated datum, generating, by the platform server, a configuration based on the selected sensor and the associated datum, communicating, by the platform server, the configuration to a computing device over a wireless link, receiving, by the computing device, the configuration, updating, by the computing device, with the configuration, and transmitting and receiving, by the computing device, data with the selected sensor based on the configuration.

IPC Classes  ?

  • H04W 84/18 - Self-organising networks, e.g. ad hoc networks or sensor networks
  • H04L 41/0803 - Configuration setting
  • H04W 4/38 - Services specially adapted for particular environments, situations or purposes for collecting sensor information
  • H04W 24/02 - Arrangements for optimising operational condition
  • H04W 24/10 - Scheduling measurement reports

41.

Hub communication with a satellite network or a terrestrial network

      
Application Number 17976813
Grant Number 11664887
Status In Force
Filing Date 2022-10-30
First Publication Date 2023-02-23
Grant Date 2023-05-30
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Noah, Moshe
  • Lewis, Vijay
  • Agrawal, Meghna
  • Ruttik, Kalle
  • Beyene, Yihenew Dagne
  • Winata, Barry

Abstract

Apparatuses, methods, and systems of hub communication with a satellite network or a terrestrial network are disclosed. One method includes detecting presence of the satellite network, detecting, by the hub, presence of a terrestrial network, selecting to connect to one of the satellite network or the terrestrial network based on a priority ruleset, estimating a propagation delay between the hub and a base station of the satellite network when the satellite network is selected, adjusting a timing offset between transmit and receive radio frames at the hub based on whether the satellite network or the terrestrial network is selected, and based at least on the propagation delay and a frame offset between uplink and downlink frames at base station, and communicating with the base station of the satellite network or a base station of the terrestrial network.

IPC Classes  ?

42.

Coordinated access to a satellite link using data profiles

      
Application Number 17901981
Grant Number 11811493
Status In Force
Filing Date 2022-09-02
First Publication Date 2023-01-05
Grant Date 2023-11-07
Owner
  • Skylo Technologies, Inc. (USA)
  • Skylo (USA)
Inventor
  • Nuttall, Andrew
  • Lewis, Vijay
  • Sambangi, Sreedhar
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for coordinated access to a wireless link through data profiles are disclosed. One method includes receiving through the wireless link, by each hub associated with a base station, one or more data profiles from a network management element, receiving, by each hub, data from data sources associated with the hub, controlling, by each hub, a timing of communication of the data for each of the data sources from the hub to the base station through the wireless link based on the one or more data profiles, allocating preamble codes to each of the data sources, wherein different preamble codes are allocated to different data sources of different hubs that report within a margin of time of each other, and including the allocated preamble codes with the data of each of the data sources.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 56/00 - Synchronisation arrangements
  • H04W 28/06 - Optimising, e.g. header compression, information sizing
  • H04L 47/36 - Flow controlCongestion control by determining packet size, e.g. maximum transfer unit [MTU]
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing
  • H04W 8/04 - Registration at HLR or HSS [Home Subscriber Server]

43.

RF (radio frequency) virtualization architecture

      
Application Number 17345810
Grant Number 11943705
Status In Force
Filing Date 2021-06-11
First Publication Date 2022-12-15
Grant Date 2024-03-26
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Beyene, Yihenew Dagne
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lehtinen, Keijo Tapio

Abstract

Apparatuses, methods, and systems for a radio frequency (RF) virtualization system are disclosed. One system includes a plurality of radios, an abstraction layer network, and a controller. The controller operates to receive a standard set of interfaces and capabilities from a plurality of radios through the abstraction layer network, wherein the abstraction layer provides an interface to connect the radio access technology to a corresponding one of the plurality of radios, receive a request from the radio access technology for a radio of the plurality of radios, and allocate and connect a one of a plurality of radios that satisfies specifications of the request of the radio access technology, wherein the one of the plurality of radios that is allocated and connected to the radio access technology changes over time.

IPC Classes  ?

  • H04W 48/18 - Selecting a network or a communication service
  • G06F 9/455 - EmulationInterpretationSoftware simulation, e.g. virtualisation or emulation of application or operating system execution engines
  • H04W 4/02 - Services making use of location information
  • H04W 24/02 - Arrangements for optimising operational condition
  • H04W 72/51 - Allocation or scheduling criteria for wireless resources based on terminal or device properties

44.

Providing functional models to hubs to enhance operation of the hubs

      
Application Number 17872273
Grant Number 11622241
Status In Force
Filing Date 2022-07-25
First Publication Date 2022-11-10
Grant Date 2023-04-04
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Acker, Christopher
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for providing function models to hubs, are disclosed. One method includes sensing, by a hub, local data, collecting the local data from the hub, creating function models based on the collected local data and non-local data collected from non-local data sources, dynamically creating non-local inputs based upon the local data from the hub and the non-local data collected from non-local data sources, transmitting the created function models to the plurality of hubs at a first timing, and dynamically transmitting the non-local inputs to each of the plurality of hubs at a second timing, and applying, by the hub, current locally sensed data and the dynamically transmitted non-local inputs to the created function models.

IPC Classes  ?

  • H04W 4/00 - Services specially adapted for wireless communication networksFacilities therefor
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04L 41/0806 - Configuration setting for initial configuration or provisioning, e.g. plug-and-play

45.

Transmission management

      
Application Number 17241630
Grant Number 11716698
Status In Force
Filing Date 2019-09-23
First Publication Date 2022-10-27
Grant Date 2023-08-01
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Ruttik, Kalle
  • Lehtinen, Keijo
  • Beyene, Yihenew
  • Keskinen, Marko
  • Jantti, Riku

Abstract

The invention relates to a solution for determining an allowable round trip time for a communication between a base station and a terminal device served by the base station in an asynchronous communication system, At least some aspects of the solution relate to a method performed by a controller, the method comprises: determining round trip times of terminal devices served by the base station; selecting a maximum round trip time among the determined round trip times of the terminal devices served by the base station as the allowable round trip time; and delivering the selected allowable round trip time to the base station. The solution also relates to applying the determined round trip time by a base station and a terminal device as well as to a system comprising the mentioned entities and to computer program products.

IPC Classes  ?

46.

Dynamically controlling a local buffer of a modem of a wireless device

      
Application Number 17307464
Grant Number 11576074
Status In Force
Filing Date 2021-05-04
First Publication Date 2022-09-29
Grant Date 2023-02-07
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio
  • Lewis, Vijay
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically controlling a local buffer of a modem of a wireless device are disclosed. One method includes receiving and queuing transmission packets in the local buffer of the modem of the wireless device for wireless transmission to a receiving device, purging each transmission packet from the local buffer after receiving an acknowledgement of reception of the transmission packet from the receiving device, and requesting acknowledgement from the receiving device when a queue of the transmission packets within the local buffer exceeds a threshold level, wherein the receiving device aggregates acknowledgment responses to a plurality of unpurged transmission packets in the local buffer and transmits an aggregated acknowledgment to the modem.

IPC Classes  ?

  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04L 1/18 - Automatic repetition systems, e.g. Van Duuren systems
  • H04L 49/90 - Buffering arrangements
  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04L 49/9057 - Arrangements for supporting packet reassembly or resequencing
  • H04L 1/1607 - Details of the supervisory signal

47.

Configuring multicast communication

      
Application Number 17832581
Grant Number 11689382
Status In Force
Filing Date 2022-06-04
First Publication Date 2022-09-22
Grant Date 2023-06-27
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio

Abstract

Apparatuses, methods, and systems for configuring multicast communication, are disclosed. One method includes generating, by a system platform, a multicast scheduling control packet based upon a distribution of a plurality of hubs, communicating, by the system platform, to a wireless communication base station the multicast scheduling control packet, generating, by the wireless communication base station, a plurality of multicast channel configurations based upon the multicast scheduling control packet, communicating, by the system platform, the multicast scheduling control packet to a wireless communication hub, wherein the wireless communication hub is one of the plurality of hubs, selecting, by the wireless communication hub, specific multicast channels from the plurality of multicast channel configurations, to receive specific multicast data based upon a condition of the hub and the multicast scheduling control packet, and receiving, by the wireless communication hub, multicast data through the selected specific multicast channel configurations.

IPC Classes  ?

  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services

48.

Data package selection for data reporting of one or more data sources

      
Application Number 17833360
Grant Number 12143849
Status In Force
Filing Date 2022-06-06
First Publication Date 2022-09-22
Grant Date 2024-11-12
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Cooper, Jennifer
  • Nuttall, Andrew
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a network provider, data types a customer user is to have reported from one or more data sources of the customer user, wherein the reporting is from data sources, and wherein the wireless reporting is through a wireless uplink between the data sources to a base station, providing, by the network provider, options of data packages to the customer, wherein the options of data packages are selected from the set of data packages based on the data types provided by the customer user, and receiving, by the network provider, from the customer user, a selection of a data package from the provided options of data packages, wherein the selected data package includes one or more data types, and when data within the selected data package are to be reported.

IPC Classes  ?

49.

COORDINATED SATELLITE AND TERRESTRIAL CHANNEL UTILIZATION

      
Application Number US2022070143
Publication Number 2022/198149
Status In Force
Filing Date 2022-01-11
Publication Date 2022-09-22
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinated satellite and terrestrial channel utilization, are disclosed. One wireless system includes a plurality of base stations, a plurality of hubs, and a controller. For an embodiment, the controller is operative to determine discrete communication delays for each base station based upon a maximum propagation delay between each base station and the one or more of the plurality of hubs, generate a channel sharing map that includes a timing of communication between each base station and the one or more of the plurality of hubs, communicate the channel sharing map to the plurality of base stations. Further, each of the plurality of base stations operates to time wireless communication with the plurality of hubs based on the channel sharing map, the discrete communication delays of the base station, and a communication delay of a preceding base station according to the channel sharing map.

IPC Classes  ?

50.

Coordinated satellite and terrestrial channel utilization

      
Application Number 17582098
Grant Number 11601194
Status In Force
Filing Date 2022-01-24
First Publication Date 2022-09-15
Grant Date 2023-03-07
Owner Skylo Technologies, Inc (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinated satellite and terrestrial channel utilization, are disclosed. One wireless system includes a plurality of base stations, a plurality of hubs, and a controller. For an embodiment, the controller is operative to determine discrete communication delays for each base station based upon a maximum propagation delay between each base station and the one or more of the plurality of hubs, generate a channel sharing map that includes a timing of communication between each base station and the one or more of the plurality of hubs, communicate the channel sharing map to the plurality of base stations. Further, each of the plurality of base stations operates to time wireless communication with the plurality of hubs based on the channel sharing map, the discrete communication delays of the base station, and a communication delay of a preceding base station according to the channel sharing map.

IPC Classes  ?

51.

SKYLO

      
Serial Number 97569211
Status Registered
Filing Date 2022-08-29
Registration Date 2024-02-27
Owner Skylo Technologies, Inc. ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing temporary use of non-downloadable cloud-based software for connecting devices in the satellite network; technical consulting in the field of satellite network connectivity

52.

SKYLO

      
Serial Number 97569207
Status Registered
Filing Date 2022-08-29
Registration Date 2024-02-27
Owner Skylo Technologies, Inc. ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Providing temporary use of non-downloadable cloud-based software for connecting devices in the satellite network; technical consulting in the field of satellite network connectivity

53.

Simultaneously broadcasting acknowledgements of reception of uplink wireless communication

      
Application Number 17683867
Grant Number 11800540
Status In Force
Filing Date 2022-03-01
First Publication Date 2022-08-25
Grant Date 2023-10-24
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for communicating through a wireless link are disclosed. A method includes scheduling, by a server, communication between a base station and a plurality of hubs, receiving, by the base station, the scheduled communication, providing, to each hub, a data profile that includes a periodicity, an offset, and a carrier frequency based on the scheduled communication, receiving, by the base station, uplink wireless communication from each of the plurality of hubs according to the data profile of each of the hubs and according to the scheduled communication, and simultaneously broadcasting, by the base station, acknowledgements of reception of uplink wireless communication from each of the plurality of hubs.

IPC Classes  ?

  • H04L 5/00 - Arrangements affording multiple use of the transmission path
  • H04W 72/30 - Resource management for broadcast services
  • H04B 7/185 - Space-based or airborne stations
  • H04W 72/0446 - Resources in time domain, e.g. slots or frames
  • H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA

54.

Coordinated transmissions over a transient roving wireless communication channel

      
Application Number 17686226
Grant Number 11627621
Status In Force
Filing Date 2022-03-03
First Publication Date 2022-07-21
Grant Date 2023-04-11
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Lewis, Vijay
  • Agrawal, Meghna
  • Lehtinen, Keijo Tapio
  • Beyene, Yihenew Dagne
  • Acker, Christopher
  • Salim, Rounak
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for coordinating wireless communication are disclosed. One method includes generating, by a wireless radiator, a plurality of selectable directional wireless communication links capable of providing connectivity across a plurality of cells, wherein each of the cells is spatially different from other cells, and wherein each of the cells covers a cell area, wherein a plurality of hubs are located within the cell area, generating, by a controller, a cell map, wherein the cell map maps which of the directional wireless links, which of the plurality cells, and which of the hubs are active as a function of time, thereby supporting a wireless communication link between the base station and the hubs of the cell area corresponding with the active directional wireless link, and providing the cell map to the base station and the hubs of each of the cells.

IPC Classes  ?

55.

Dynamically estimating a propagation time between a first node and a second node of a wireless network

      
Application Number 17690995
Grant Number 11646809
Status In Force
Filing Date 2022-03-09
First Publication Date 2022-06-23
Grant Date 2023-05-09
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes receiving, by the second node, from the first node a packet containing a first timestamp representing the transmit time of the packet, receiving, by the second node, from a local time source, a second timestamp corresponding with a time of reception of the first timestamp received from the first node, calculating a time difference between the first timestamp and the second timestamp, storing the time difference between the first timestamp and the second timestamp, calculating a predictive model for predicting the propagation time based the time difference between the first timestamp and the second timestamp, and estimating the propagation time between the first node and the second node at a time by querying the predictive model with the time.

IPC Classes  ?

56.

Providing functional models to hubs to enhance operation of the hubs

      
Application Number 17120181
Grant Number 11451935
Status In Force
Filing Date 2020-12-13
First Publication Date 2022-06-16
Grant Date 2022-09-20
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Acker, Christopher
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for providing function models to hubs, are disclosed. One method includes sensing, by a plurality of hubs, local data, collecting the local data from the plurality of hubs, creating function models based on the collected local data and outside data collected from outside data sources, dynamically creating non-local inputs for each of the plurality of hubs based upon the local data from the plurality of hubs and the outside data collected, a location of the hub, a time, and an application the hub serves, transmitting the created function models to the plurality of hubs at a first timing, and dynamically transmitting the non-local inputs to each of the plurality of hubs at a second timing, and applying, by one or more of the plurality of hubs, current locally sensed data and the dynamically transmitted non-local inputs to the created function models.

IPC Classes  ?

  • H04W 4/00 - Services specially adapted for wireless communication networksFacilities therefor
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04L 41/0806 - Configuration setting for initial configuration or provisioning, e.g. plug-and-play

57.

Tunable patch antenna array including a dielectric plate

      
Application Number 17234848
Grant Number 11342665
Status In Force
Filing Date 2021-04-20
First Publication Date 2022-05-24
Grant Date 2022-05-24
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Reuveni, Tobi
  • Reich, Ely
  • Meir, Moshe
  • Goldfarb, Ariel

Abstract

Apparatuses, methods, and systems for an antenna assembly, are disclosed. One apparatus includes a multiple layer printed circuit board (PCB), a dielectric plate, and antenna elements. The PCB includes antenna excitation feed elements, wherein the antenna excitation feed elements are located on a layer of the PCB. A second surface of the dielectric plate is affixed to a first surface of PCB forming gaps adjacent each of the antenna excitation feed elements, wherein a dielectric constant of the dielectric plate, a thickness of the dielectric plate, and a thickness of the gaps are selected based on an operating frequency of wireless signals communicated through the antenna assembly, and based on RF (radio frequency) characteristics of the PCB. Each of the antenna elements are affixed to a first surface of the dielectric plate.

IPC Classes  ?

  • H03M 1/42 - Sequential comparisons in series-connected stages with no change in value of analogue signal
  • H01Q 3/30 - Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the relative phase or relative amplitude of energisation between two or more active radiating elementsArrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the distribution of energy across a radiating aperture varying the phase
  • H01Q 1/22 - SupportsMounting means by structural association with other equipment or articles
  • H01Q 1/42 - Housings not intimately mechanically associated with radiating elements, e.g. radome

58.

Time delay estimations between wireless nodes

      
Application Number 17575760
Grant Number 12069602
Status In Force
Filing Date 2022-01-14
First Publication Date 2022-05-12
Grant Date 2024-08-20
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes determining a first time propagation delay between the first node and the second node based on location of the second node and the kinematic information of a third node, receiving, by the second node, a packet from the first node containing a timestamp representing a transmit time of the packet from the first node, determining a second time propagation delay between the first node and the second node based upon the difference between the reception time of the packet, and the first time stamp included within the packet, transmitting, by a second node a TX packet after a holding delay based on the first propagation delay and the second propagation delay.

IPC Classes  ?

59.

Coordinated transmissions over a transient roving wireless communication channel

      
Application Number 17151143
Grant Number 11304253
Status In Force
Filing Date 2021-01-16
First Publication Date 2022-04-12
Grant Date 2022-04-12
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Lewis, Vijay
  • Agrawal, Meghna
  • Lehtinen, Keijo Tapio
  • Beyene, Yihenew Dagne
  • Acker, Christopher
  • Salim, Rounak
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for coordinating wireless communication are disclosed. One method includes generating, by a wireless radiator, a plurality of selectable directional wireless communication links capable of providing connectivity across a plurality of cells, wherein each of the cells is spatially different from other cells, and wherein each of the cells covers a cell area, wherein a plurality of hubs are located within the cell area, generating, by a controller, a cell map, wherein the cell map maps which of the directional wireless links, which of the plurality cells, and which of the hubs are active as a function of time, thereby supporting a wireless communication link between the base station and the hubs of the cell area corresponding with the active directional wireless link, and providing the cell map to the base station and the hubs of each of the cells.

IPC Classes  ?

60.

Coordinated satellite and terrestrial channel utilization

      
Application Number 17200847
Grant Number 11277201
Status In Force
Filing Date 2021-03-14
First Publication Date 2022-03-15
Grant Date 2022-03-15
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Agrawal, Meghna
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for coordinated satellite and terrestrial channel utilization, are disclosed. One wireless system includes a plurality of base stations, a plurality of hubs, and a controller. For an embodiment, the controller is operative to determine discrete communication delays for each base station based upon a maximum propagation delay between each base station and the one or more of the plurality of hubs, generate a channel sharing map that includes a timing of communication between each base station and the one or more of the plurality of hubs, communicate the channel sharing map to the plurality of base stations. Further, each of the plurality of base stations operates to time wireless communication with the plurality of hubs based on the channel sharing map, the discrete communication delays of the base station, and a communication delay of a preceding base station according to the channel sharing map.

IPC Classes  ?

61.

Configuring multicast communication

      
Application Number 17072173
Grant Number 11411760
Status In Force
Filing Date 2020-10-16
First Publication Date 2022-02-17
Grant Date 2022-08-09
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay
  • Beyene, Yihenew Dagne
  • Lehtinen, Keijo Tapio

Abstract

Apparatuses, methods, and systems for configuring multicast communication, are disclosed. One method includes generating, by a system platform, a multicast scheduling control packet based upon a distribution of a plurality of network registered hubs, communicating, by the system platform, to a wireless communication base station the multicast scheduling control packet, generating, by the wireless communication base station, a plurality of multicast channel configurations based upon the multicast scheduling control packet, communicating, by the system platform, the multicast scheduling control packet to a wireless communication hub, wherein the wireless communication hub is one of the plurality of network registered hubs, selecting, by the wireless communication hub, specific multicast channels from the plurality of multicast channel configurations, to receive specific multicast data based upon a condition of the hub and the multicast scheduling control packet, and receiving, by the wireless communication hub, multicast data through the selected specific multicast channel configurations.

IPC Classes  ?

  • H04L 12/18 - Arrangements for providing special services to substations for broadcast or conference
  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04W 72/04 - Wireless resource allocation
  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services

62.

Control of antenna steering of a wireless device

      
Application Number 16922252
Grant Number 11451288
Status In Force
Filing Date 2020-07-07
First Publication Date 2022-01-13
Grant Date 2022-09-20
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Acker, Christopher
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for control of antenna steering of a wireless device, are disclosed. One method includes selecting beamforming direction settings of a multiple antenna array of a radio, retrieving spatial relationships between each of different beamforming directions, receiving, by the radio, a wireless signal from a base station and measuring signal metrics of the wireless signal, sensing motion of the wireless device, identifying a wireless connection direction for establishing a wireless connection with the base station based on the signal metrics, the plurality of beamforming direction settings used while receiving the wireless signal, and an orientation of the wireless device determined based on the sensed motion of the wireless device, and selecting a one of the plurality of beamforming direction settings for communicating with the base station based on the wireless connection direction, a beamforming setting that corresponds with the wireless connection.

IPC Classes  ?

  • H04B 7/08 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station
  • H04W 24/08 - Testing using real traffic
  • H04B 7/0404 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas the mobile station comprising multiple antennas, e.g. to provide uplink diversity

63.

CONTROL OF ANTENNA STEERING OF A WIRELESS DEVICE

      
Application Number US2021035752
Publication Number 2022/010600
Status In Force
Filing Date 2021-06-03
Publication Date 2022-01-13
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Acker, Christopher
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for control of antenna steering of a wireless device, are disclosed. One method includes selecting beamforming direction settings of a multiple antenna array of a radio, retrieving spatial relationships between each of different beamforming directions, receiving, by the radio, a wireless signal from a base station and measuring signal metrics of the wireless signal, sensing motion of the wireless device, identifying a wireless connection direction for establishing a wireless connection with the base station based on the signal metrics, the plurality of beamforming direction settings used while receiving the wireless signal, and an orientation of the wireless device determined based on the sensed motion of the wireless device, and selecting a one of the plurality of beamforming direction settings for communicating with the base station based on the wireless connection direction, a beamforming setting that corresponds with the wireless connection.

IPC Classes  ?

  • H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
  • H01Q 3/40 - Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the relative phase or relative amplitude of energisation between two or more active radiating elementsArrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the distribution of energy across a radiating aperture varying the phase by electrical means with phasing matrix

64.

Multiple layer printed circuit board that includes multiple antennas and supports satellite communications

      
Application Number 17346251
Grant Number 11515647
Status In Force
Filing Date 2021-06-13
First Publication Date 2021-10-07
Grant Date 2022-11-29
Owner Stylo Technologies, Inc. (USA)
Inventor
  • Noah, Moshe
  • Meir, Moshe

Abstract

Apparatuses, methods, and systems for a printed circuit board that includes multiple antennas, and operates to support satellite communications, are disclosed. One apparatus includes a first flat panel element. The first flat panel element includes a multilayer PCB (printed circuit board). The multilayer PCB includes a first exterior layer comprising N antenna elements, and a second exterior layer comprising N RF (radio frequency) chains operative to process the RF signals, each of the N RF chains electrically connected to a one of the N antenna elements, and N metal patches arranged in a square, wherein an air gap is located between the N metal patches and the N antenna elements, wherein dimensions, orientation, and spacing between the N metal patches and the N antenna elements are selected based on a carrier frequency, bandwidth, and directionality of the propagated RF signals.

IPC Classes  ?

  • H01Q 21/06 - Arrays of individually energised antenna units similarly polarised and spaced apart
  • H01Q 3/36 - Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the relative phase or relative amplitude of energisation between two or more active radiating elementsArrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the distribution of energy across a radiating aperture varying the phase by electrical means with variable phase-shifters
  • H01Q 1/28 - Adaptation for use in or on aircraft, missiles, satellites, or balloons

65.

Data package selection for data reporting of one or more data sources

      
Application Number 17219938
Grant Number 11381992
Status In Force
Filing Date 2021-04-01
First Publication Date 2021-07-22
Grant Date 2022-07-05
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Cooper, Jennifer
  • Nuttall, Andrew
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a network provider, data types a customer user is to have reported from one or more data sources of the customer user, wherein the reporting is from data sources, and wherein the wireless reporting is through a wireless uplink between the data sources to a base station, providing, by the network provider, options of data packages to the customer, wherein the options of data packages are selected from the set of data packages based on the data types provided by the customer user, and receiving, by the network provider, from the customer user, a selection of a data package from the provided options of data packages, wherein the selected data package includes one or more data types, and when data within the selected data package are to be reported.

IPC Classes  ?

66.

Multiple layer printed circuit board that includes multiple antennas and supports satellite communications

      
Application Number 16840338
Grant Number 11069985
Status In Force
Filing Date 2020-04-04
First Publication Date 2021-07-20
Grant Date 2021-07-20
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Noah, Moshe
  • Meir, Moshe

Abstract

Apparatuses, methods, and systems for a printed circuit board that includes multiple antennas, and operates to support satellite communications, are disclosed. One apparatus includes a first flat panel element. The first flat panel element includes a multilayer PCB (printed circuit board). The multilayer PCB includes a first exterior layer comprising N antenna elements, and a second exterior layer comprising N RF (radio frequency) chains operative to process the RF signals, each of the N RF chains electrically connected to a one of the N antenna elements, wherein all of a plurality of plated through hole vias of the PCB extend through the multilayer PCB from the first exterior layer to the second exterior layer, wherein vias that operate to connect control signals include extended cleanouts on layers of the multilayer PCB that do not include terminations of the control signals.

IPC Classes  ?

  • H01Q 21/06 - Arrays of individually energised antenna units similarly polarised and spaced apart
  • H01Q 3/36 - Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the relative phase or relative amplitude of energisation between two or more active radiating elementsArrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the distribution of energy across a radiating aperture varying the phase by electrical means with variable phase-shifters
  • H01Q 1/28 - Adaptation for use in or on aircraft, missiles, satellites, or balloons

67.

Scheduling virtual preambles for data source reporting

      
Application Number 17194891
Grant Number 11464026
Status In Force
Filing Date 2021-03-08
First Publication Date 2021-07-08
Grant Date 2022-10-04
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a base station, a preamble from a set of one or more data sources during a scheduled time slot, receiving, by the base station, a virtual preamble from during the scheduled time slot, wherein the virtual preamble is associated with another set of one or more data sources, generating, by the base station, responses to both the preamble and the virtual preamble, wherein the responses include scheduled time and frequency allocations for uplink communication from the set of one or more data sources and the other set of one or more data sources, and transmitting, by the base station, the responses to the set of one or more data sources and the other set of one or more data sources.

IPC Classes  ?

68.

SCHEDULING VIRTUAL PREAMBLES FOR DATA SOURCE REPORTING

      
Application Number US2020055178
Publication Number 2021/076430
Status In Force
Filing Date 2020-10-11
Publication Date 2021-04-22
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a base station, one or more preambles from a set of one or more data sources during a scheduled time slot, receiving, by the base station, one or more virtual preambles from a network server during the scheduled time slot, wherein the one or more virtual preambles are associated with another set of one or more data sources, generating, by the base station, responses to the preambles and the virtual preambles, wherein the responses included scheduled time and frequency allocations for uplink communication from the set of one or more data sources and the other set of one or more data sources, and transmitting, by the base station, the responses to the set of one or more data sources and the other set of one or more data sources.

IPC Classes  ?

  • H04W 72/04 - Wireless resource allocation
  • H04W 72/14 - Wireless traffic scheduling using a grant channel
  • H04W 28/26 - Resource reservation
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure

69.

Data package selection for data reporting of one or more data sources

      
Application Number 16658043
Grant Number 10999755
Status In Force
Filing Date 2019-10-19
First Publication Date 2021-04-22
Grant Date 2021-05-04
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Cooper, Jennifer
  • Nuttall, Andrew
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a network provider, data types a customer user is to have reported from one or more data sources of the customer user, wherein the reporting is from data sources, and wherein the wireless reporting is through a wireless uplink between the data sources to a base station, providing, by the network provider, options of data packages to the customer, wherein the options of data packages are selected from the set of data packages based on the data types provided by the customer user, and receiving, by the network provider, from the customer user, a selection of a data package from the provided options of data packages, wherein the selected data package includes one or more data types, and how and when data within the selected data package are to be reported.

IPC Classes  ?

70.

Scheduling virtual preambles for data source reporting

      
Application Number 16658044
Grant Number 10986646
Status In Force
Filing Date 2019-10-19
First Publication Date 2021-04-20
Grant Date 2021-04-20
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for data source reporting are disclosed. A method includes receiving, by a base station, one or more preambles from a set of one or more data sources during a scheduled time slot, receiving, by the base station, one or more virtual preambles from a network server during the scheduled time slot, wherein the one or more virtual preambles are associated with another set of one or more data sources, generating, by the base station, responses to the preambles and the virtual preambles, wherein the responses included scheduled time and frequency allocations for uplink communication from the set of one or more data sources and the other set of one or more data sources, and transmitting, by the base station, the responses to the set of one or more data sources and the other set of one or more data sources.

IPC Classes  ?

71.

HUB COMMUNICATION WITH A SATELLITE NETWORK OR A TERRESTRIAL NETWORK

      
Application Number US2020048941
Publication Number 2021/071606
Status In Force
Filing Date 2020-09-01
Publication Date 2021-04-15
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Noah, Moshe
  • Lewis, Vijay
  • Agrawal, Meghna
  • Ruttik, Kalle
  • Beyene, Yihenew Dagne
  • Winata, Barry

Abstract

Apparatuses, methods, and systems of hub communication with a satellite network or a terrestrial network are disclosed. One method includes detecting presence of the satellite network, detecting, by the hub, presence of a terrestrial network, selecting to connect to one of the satellite network or the terrestrial network based on a priority ruleset, estimating a propagation delay between the hub and a base station of the satellite network when the satellite network is selected, adjusting a timing offset between transmit and receive radio frames at the hub based on whether the satellite network or the terrestrial network is selected, and based at least on the propagation delay and a fixed frame offset between uplink and downlink frames at base station, and communicating with the base station of the satellite network or a base station of the terrestrial network.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 28/02 - Traffic management, e.g. flow control or congestion control
  • H04W 84/06 - Airborne or Satellite Networks

72.

Coordinated access to a satellite link using data profiles

      
Application Number 17118207
Grant Number 11489587
Status In Force
Filing Date 2020-12-10
First Publication Date 2021-03-25
Grant Date 2022-11-01
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Lewis, Vijay
  • Sambangi, Sreedhar
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for coordinated access to a wireless link through data profiles are disclosed. One method includes receiving through the wireless link, by each hub associated with a base station, one or more data profiles from a network management element, receiving, by each hub, data from data sources associated with the hub, controlling, by each hub, a timing of communication of the data for each of the data sources from the hub to the base station through the wireless satellite link based on the one or more data profiles, monitoring reporting times of different data sources of different hubs over time, allocating preamble codes to each of the data sources, wherein different preamble codes are allocated to different data sources of different hubs that report within a margin of time of each other, and inserting the allocated preamble codes into packets of each of the data sources.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 56/00 - Synchronisation arrangements
  • H04W 28/06 - Optimising, e.g. header compression, information sizing
  • H04L 47/36 - Flow controlCongestion control by determining packet size, e.g. maximum transfer unit [MTU]
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing
  • H04W 8/04 - Registration at HLR or HSS [Home Subscriber Server]

73.

Dynamically estimating a propagation time between a first node and a second node of a wireless network

      
Application Number 16718574
Grant Number 11329745
Status In Force
Filing Date 2019-12-18
First Publication Date 2021-02-25
Grant Date 2022-05-10
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes receiving, by the second node, from the first node a packet containing a first timestamp representing the transmit time of the packet, receiving, by the second node, from a local time source, a second timestamp corresponding with a time of reception of the first timestamp received from the first node, calculating a time difference between the first timestamp and the second timestamp, storing the time difference between the first timestamp and the second timestamp, calculating a predictive model for predicting the propagation time based the time difference between the first timestamp and the second timestamp, and estimating the propagation time between the first node and the second node at a time by querying the predictive model with the time.

IPC Classes  ?

74.

Hub communication with a satellite network or a terrestrial network

      
Application Number 16852240
Grant Number 11515937
Status In Force
Filing Date 2020-04-17
First Publication Date 2021-02-25
Grant Date 2022-11-29
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Noah, Moshe
  • Lewis, Vijay
  • Agrawal, Meghna
  • Ruttik, Kalle
  • Beyene, Yihenew Dagne
  • Winata, Barry

Abstract

Apparatuses, methods, and systems of hub communication with a satellite network or a terrestrial network are disclosed. One method includes detecting presence of the satellite network, detecting, by the hub, presence of a terrestrial network, selecting to connect to one of the satellite network or the terrestrial network based on a priority ruleset, estimating a propagation delay between the hub and a base station of the satellite network when the satellite network is selected, adjusting a timing offset between transmit and receive radio frames at the hub based on whether the satellite network or the terrestrial network is selected, and based at least on the propagation delay and a fixed frame offset between uplink and downlink frames at base station, and communicating with the base station of the satellite network or a base station of the terrestrial network.

IPC Classes  ?

75.

DYNAMICALLY ESTIMATING A PROPAGATION TIME BETWEEN A FIRST NODE AND A SECOND NODE OF A WIRELESS NETWORK

      
Application Number US2020046336
Publication Number 2021/034647
Status In Force
Filing Date 2020-08-14
Publication Date 2021-02-25
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew

Abstract

Apparatuses, methods, and systems for dynamically estimating a propagation time between a first node and a second node of a wireless network are disclosed. One method includes receiving, by the second node, from the first node a packet containing a first timestamp representing the transmit time of the packet, receiving, by the second node, from a local time source, a second timestamp corresponding with a time of reception of the first timestamp received from the first node, calculating a time difference between the first timestamp and the second timestamp, storing the time difference between the first timestamp and the second timestamp, calculating a predictive model for predicting the propagation time based the time difference between the first timestamp and the second timestamp, and estimating the propagation time between the first node and the second node at a time by querying the predictive model with the time.

IPC Classes  ?

  • H04J 3/00 - Time-division multiplex systems
  • H04J 3/02 - Time-division multiplex systems Details
  • H04L 7/00 - Arrangements for synchronising receiver with transmitter
  • H04W 56/00 - Synchronisation arrangements

76.

SIMULTANEOUSLY BROADCASTING ACKNOWLEDGEMENTS OF RECEPTION OF UPLINK WIRELESS COMMUNICATION

      
Application Number US2020040980
Publication Number 2021/015944
Status In Force
Filing Date 2020-07-07
Publication Date 2021-01-28
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for communicating through a wireless link are disclosed. A method includes scheduling, by a server, communication between a base station and a plurality of hubs, receiving, by the base station, the scheduled communication, providing, to each hub, a data profile that includes a periodicity, an offset, and a carrier frequency based on the scheduled communication, receiving, by the base station, uplink wireless communication from each of the plurality of hubs according to the data profile of each of the hubs and according to the scheduled communication, and simultaneously broadcasting, by the base station, acknowledgements of reception of uplink wireless communication from each of the plurality of hubs.

IPC Classes  ?

  • H04W 4/06 - Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]Services to user groupsOne-way selective calling services
  • H04W 76/15 - Setup of multiple wireless link connections
  • H04W 52/02 - Power saving arrangements

77.

Dynamic multiple access for distributed device communication networks with scheduled and unscheduled transmissions

      
Application Number 17023128
Grant Number 11233697
Status In Force
Filing Date 2020-09-16
First Publication Date 2020-12-31
Grant Date 2022-01-25
Owner SKylo Technologes, Inc. (USA)
Inventor
  • Trivedi, Parthsarathi
  • Kalman, Andrew
  • Nuttall, Andrew

Abstract

Disclosed herein are systems and networks comprising a network operations server application for improving a packet-switched communications network, the application configured to: receive data from data source nodes; provide a management console allowing a user to configure a network multi-access protocol for: i) a node, ii) a type of node, iii) a group of nodes, iv) a type of data packet from a node, v) a type of data packet from a type of node, vi) a type of data packet from a group of nodes, or vii) a specific instance of a data packet from a node, the network multi-access protocol a scheduled or random access protocol; and dynamically create channel assignments to allocate bandwidth of the network among channels based on the configured network multi-access protocols to prevent network saturation and minimize data collisions in the packet-switched network.

IPC Classes  ?

  • H04L 12/24 - Arrangements for maintenance or administration
  • H04W 74/02 - Hybrid access
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure

78.

COORDINATED ACCESS TO A SATELLITE LINK USING DATA PROFILES

      
Application Number US2020025399
Publication Number 2020/222952
Status In Force
Filing Date 2020-03-27
Publication Date 2020-11-05
Owner SKYLO TECHNOLOGIES, INC. (USA)
Inventor
  • Nuttall, Andrew
  • Lewis, Vijay
  • Sambangi, Sreedhar
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for coordinated access to a satellite link through data profiles are disclosed. A method includes providing, by each of a plurality of hubs, a unique identifier to a network management element associated with a base station, wherein the providing includes wirelessly transmitting, by each of the hubs, the unique identifier to the base station through a wireless satellite link, receiving through the wireless satellite link, by each hub, one or more data profiles back from the network management element wherein each of the one or more data profiles correspond with one or more data sources associated with the hub, and controlling, by each hub, a timing of communication of the data for each of the one or more data sources from the hub to the base station through the wireless satellite link based on the data profile corresponding with the data source.

IPC Classes  ?

  • H04L 29/04 - Communication control; Communication processing for plural communication lines
  • H04L 29/06 - Communication control; Communication processing characterised by a protocol
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure
  • H04W 84/12 - WLAN [Wireless Local Area Networks]

79.

Simultaneously broadcasting acknowledgements of reception of uplink wireless communication

      
Application Number 16520515
Grant Number 11297599
Status In Force
Filing Date 2019-07-24
First Publication Date 2020-10-29
Grant Date 2022-04-05
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Agrawal, Meghna
  • Nuttall, Andrew
  • Lewis, Vijay

Abstract

Apparatuses, methods, and systems for communicating through a wireless link are disclosed. A method includes scheduling, by a server, communication between a base station and a plurality of hubs, receiving, by the base station, the scheduled communication, providing, to each hub, a data profile that includes a periodicity, an offset, and a carrier frequency based on the scheduled communication, receiving, by the base station, uplink wireless communication from each of the plurality of hubs according to the data profile of each of the hubs and according to the scheduled communication, and simultaneously broadcasting, by the base station, acknowledgements of reception of uplink wireless communication from each of the plurality of hubs.

IPC Classes  ?

  • H04W 72/00 - Local resource management
  • H04L 5/00 - Arrangements affording multiple use of the transmission path
  • H04B 7/185 - Space-based or airborne stations
  • H04W 72/04 - Wireless resource allocation

80.

Coordinated access to a satellite link using data profiles

      
Application Number 16396651
Grant Number 10897305
Status In Force
Filing Date 2019-04-27
First Publication Date 2020-10-29
Grant Date 2021-01-19
Owner Skylo Technologies, Inc. (USA)
Inventor
  • Nuttall, Andrew
  • Lewis, Vijay
  • Sambangi, Sreedhar
  • Agrawal, Meghna

Abstract

Apparatuses, methods, and systems for coordinated access to a satellite link through data profiles are disclosed. A method includes providing, by each of a plurality of hubs, a unique identifier to a network management element associated with a base station, wherein the providing includes wirelessly transmitting, by each of the hubs, the unique identifier to the base station through a wireless satellite link, receiving through the wireless satellite link, by each hub, one or more data profiles back from the network management element wherein each of the one or more data profiles correspond with one or more data sources associated with the hub, and controlling, by each hub, a timing of communication of the data for each of the one or more data sources from the hub to the base station through the wireless satellite link based on the data profile corresponding with the data source.

IPC Classes  ?

  • H04B 7/185 - Space-based or airborne stations
  • H04W 56/00 - Synchronisation arrangements
  • H04W 28/06 - Optimising, e.g. header compression, information sizing
  • H04L 12/805 - Determination of the optimum packet size, e.g. maximum transmission unit [MTU]
  • H04L 12/801 - Flow control or congestion control
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing

81.

SKYLO

      
Serial Number 90098312
Status Registered
Filing Date 2020-08-06
Registration Date 2024-01-09
Owner Skylo Technologies, Inc. ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Computer hardware for transmitting and communicating data through satellite networks

82.

SKYLO

      
Serial Number 90098314
Status Registered
Filing Date 2020-08-06
Registration Date 2024-01-09
Owner Skylo Technologies, Inc. ()
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 38 - Telecommunications services

Goods & Services

Computer hardware for transmitting and communicating data through satellite networks Satellite communications services, namely, internet connectivity for devices

83.

Devices and methods for specialized machine-to-machine communication transmission network modes via edge node capabilities

      
Application Number 16379483
Grant Number 10735931
Status In Force
Filing Date 2019-04-09
First Publication Date 2019-08-01
Grant Date 2020-08-04
Owner SKYLO TECHNOLOGIES INC. (USA)
Inventor
  • Nuttall, Andrew
  • Trivedi, Parthsarathi
  • Kalman, Andrew

Abstract

Disclosed herein are hub devices for a machine-to-machine (M2M) communications network that enables multiple communication modes for data source nodes, the hub comprising a processor, a local connectivity system configured to communicate data with the data source nodes via an interface, a data processing and caching system comprising a local memory and configured to receive and store user-defined data routing and processing functions, prioritize the data based on the user-defined functions; and route the prioritized data to the local memory for storage or to the data transmission system for immediate transmission based on the priority, and a data transmission system configured to dynamically assign an M2M upload mechanism to the routed data selected from: a real-time transmission mechanism, a fixed interval mechanism, a data backhaul mechanism, and a user pull mechanism; and transmit the data to a network backhaul link for delivery to a host point.

IPC Classes  ?

  • H04W 4/70 - Services for machine-to-machine communication [M2M] or machine type communication [MTC]
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing

84.

DEVICES AND METHODS FOR SPECIALIZED MACHINE-TO-MACHINE COMMUNICATION TRANSMISSION NETWORK MODES VIA EDGE NODE CAPABILITIES

      
Application Number US2019013015
Publication Number 2019/143517
Status In Force
Filing Date 2019-01-10
Publication Date 2019-07-25
Owner SKYLO TECHNOLOGIES INC. (USA)
Inventor
  • Nuttall, Andrew
  • Trivedi, Parthsarathi
  • Kalman, Andrew

Abstract

Disclosed herein are hub devices for a machine-to-machine (M2M) communications network that enables multiple communication modes for data source nodes, the hub comprising a processor, a local connectivity system configured to communicate data with the data source nodes via an interface, a data processing and caching system comprising a local memory and configured to receive and store user-defined data routing and processing functions, prioritize the data based on the user-defined functions; and route the prioritized data to the local memory for storage or to the data transmission system for immediate transmission based on the priority, and a data transmission system configured to dynamically assign an M2M upload mechanism to the routed data selected from: a real-time transmission mechanism, a fixed interval mechanism, a data backhaul mechanism, and a user pull mechanism; and transmit the data to a network backhaul link for delivery to a host point.

IPC Classes  ?

  • H04L 12/947 - Address processing within a device, e.g. using internal ID or tags for routing within a switch
  • H04L 12/725 - Selecting a path with suitable quality of service [QoS]
  • H04L 12/891 - Flow control of aggregated links or flows
  • H04L 12/853 - Traffic type related actions, e.g. QoS or priority for real time traffic
  • H04W 40/04 - Communication route or path selection, e.g. power-based or shortest path routing based on wireless node resources
  • H04W 4/70 - Services for machine-to-machine communication [M2M] or machine type communication [MTC]

85.

Devices and methods for specialized machine-to-machine communication transmission network modes via edge node capabilities

      
Application Number 15872761
Grant Number 10306442
Status In Force
Filing Date 2018-01-16
First Publication Date 2019-05-28
Grant Date 2019-05-28
Owner SKYLO TECHNOLOGIES INC. (USA)
Inventor
  • Nuttall, Andrew
  • Trivedi, Parthsarathi
  • Kalman, Andrew

Abstract

Disclosed herein are hub devices for a machine-to-machine (M2M) communications network that enables multiple communication modes for data source nodes, the hub comprising a processor, a local connectivity system configured to communicate data with the data source nodes via an interface, a data processing and caching system comprising a local memory and configured to receive and store user-defined data routing and processing functions, prioritize the data based on the user-defined functions; and route the prioritized data to the local memory for storage or to the data transmission system for immediate transmission based on the priority, and a data transmission system configured to dynamically assign an M2M upload mechanism to the routed data selected from: a real-time transmission mechanism, a fixed interval mechanism, a data backhaul mechanism, and a user pull mechanism; and transmit the data to a network backhaul link for delivery to a host point.

IPC Classes  ?

  • H04W 4/70 - Services for machine-to-machine communication [M2M] or machine type communication [MTC]
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure
  • H04W 40/02 - Communication route or path selection, e.g. power-based or shortest path routing

86.

DYNAMIC MULTIPLE ACCESS FOR DISTRIBUTED DEVICE COMMUNICATION NETWORKS WITH SCHEDULED AND UNSCHEDULED TRANSMISSIONS

      
Application Number US2018057507
Publication Number 2019/084266
Status In Force
Filing Date 2018-10-25
Publication Date 2019-05-02
Owner SKYLO TECHNOLOGIES INC. (USA)
Inventor
  • Trivedi, Parthsarathi
  • Kalman, Andrew
  • Nuttall, Andrew

Abstract

Disclosed herein are systems and networks comprising a network operations server application for improving a packet-switched communications network, the application configured to: receive data from data source nodes; provide a management console allowing a user to configure a network multi-access protocol for: i) a node, ii) a type of node, iii) a group of nodes, iv) a type of data packet from a node, v) a type of data packet from a type of node, vi) a type of data packet from a group of nodes, or vii) a specific instance of a data packet from a node, the network multi-access protocol a scheduled or random access protocol; and dynamically create channel assignments to allocate bandwidth of the network among channels based on the configured network multi-access protocols to prevent network saturation and minimize data collisions in the packet-switched network.

IPC Classes  ?

  • H04L 12/24 - Arrangements for maintenance or administration
  • H04L 12/413 - Bus networks with decentralised control with random access, e.g. carrier-sense multiple-access with collision detection [CSMA-CD]
  • H04L 12/54 - Store-and-forward switching systems

87.

Dynamic multiple access for distributed device communication networks with scheduled and unscheduled transmissions

      
Application Number 15795026
Grant Number 10833923
Status In Force
Filing Date 2017-10-26
First Publication Date 2019-05-02
Grant Date 2020-11-10
Owner SKYLO TECHNOLOGIES INC. (USA)
Inventor
  • Trivedi, Parthsarathi
  • Kalman, Andrew
  • Nuttall, Andrew

Abstract

Disclosed herein are systems and networks comprising a network operations server application for improving a packet-switched communications network, the application configured to: receive data from data source nodes; provide a management console allowing a user to configure a network multi-access protocol for: i) a node, ii) a type of node, iii) a group of nodes, iv) a type of data packet from a node, v) a type of data packet from a type of node, vi) a type of data packet from a group of nodes, or vii) a specific instance of a data packet from a node, the network multi-access protocol a scheduled or random access protocol; and dynamically create channel assignments to allocate bandwidth of the network among channels based on the configured network multi-access protocols to prevent network saturation and minimize data collisions in the packet-switched network.

IPC Classes  ?

  • H04L 12/24 - Arrangements for maintenance or administration
  • H04W 74/02 - Hybrid access
  • H04L 29/08 - Transmission control procedure, e.g. data link level control procedure

88.

SKYLO

      
Serial Number 88271246
Status Registered
Filing Date 2019-01-22
Registration Date 2019-07-30
Owner Skylo Technologies, Inc. ()
NICE Classes  ? 38 - Telecommunications services

Goods & Services

Satellite communications services, namely, internet connectivity for devices