Lynk Global, Inc.

États‑Unis d’Amérique

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Type PI
        Brevet 35
        Marque 5
Juridiction
        États-Unis 28
        International 9
        Canada 3
Date
2024 octobre 2
2024 5
2023 7
2022 11
2021 2
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Classe IPC
H04B 7/185 - Stations spatiales ou aériennes 25
H04W 84/06 - Réseaux aériens ou satellitaires 11
H04B 7/212 - Accès multiple par répartition dans le temps 8
H04B 7/01 - Réduction du décalage de phase 7
H04B 7/19 - Stations géo-synchrones 5
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Statut
En Instance 12
Enregistré / En vigueur 28

1.

Method and system for providing authentication of a wireless device and cell broadcast service between wireless mobile devices and a satellite network

      
Numéro d'application 18585440
Numéro de brevet 12207086
Statut Délivré - en vigueur
Date de dépôt 2024-02-23
Date de la première publication 2024-10-17
Date d'octroi 2025-01-21
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Smith, Clint
  • Meyer, John
  • Surampudi, Purnima
  • Liu, James

Abrégé

Authenticating a mobile user device with a mobile network operator in advance of an MNO authentication request from the mobile user device can be done by a satellite network sending an authentication request to the MNO system, obtaining a set of authentication vectors related to the mobile user device, storing them into a proxy home location register, receiving the MNO authentication request from the mobile user device, generating an authentication request response based on the authentication vectors, sending the authentication request response to the mobile user device, receiving an authentication response including a received signed response, comparing the received signed response with the stored signed response, and if the received signed response and stored signed response match, deem that to be a successful authentication, add an MNO location update message to a request queue and forward the MNO location update message to the MNO system over the channel when available.

Classes IPC  ?

  • H04W 12/06 - Authentification
  • H04W 8/04 - Enregistrement dans un registre de localisation nominal ou un serveur d'abonnés locaux [HSS Home Subscriber Server]
  • H04W 84/06 - Réseaux aériens ou satellitaires

2.

Cellular Core Network and Radio Access Network Infrastructure and Management in Space

      
Numéro d'application 18735481
Statut En instance
Date de dépôt 2024-06-06
Date de la première publication 2024-10-03
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Miller, Charles E.

Abrégé

A cellular network management system manages terrestrial base station communications and orbital base station communications with user equipment to provide wireless service and allocate links among terrestrial base stations and orbital base stations according to base station availability determined from state space predictions.

Classes IPC  ?

3.

Satellite Communication System Transmitting Navigation Signals Using a Wide Beam and Data Signals Using a Directive Beam

      
Numéro d'application 18543891
Statut En instance
Date de dépôt 2023-12-18
Date de la première publication 2024-08-29
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s) Speidel, Tyghe Robert

Abrégé

A satellite communications system can comprise at least one that satellite, an antenna structure deployed on the at least one satellite, and radio hardware coupled to the antenna structure that can provide for transmitting a first channel simultaneously with a second channel, wherein the first channel is transmitted using directive beams and the second channel is transmitted using a wide beam and wherein the directive beams are for data communication signals and the wide beam is for navigation signals.

Classes IPC  ?

  • H04B 7/0408 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées utilisant plusieurs faisceaux, c.-à-d. diversité de faisceaux
  • H01Q 1/28 - Adaptation pour l'utilisation dans ou sur les avions, les missiles, les satellites ou les ballons
  • H01Q 5/28 - Dispositions pour régler la polarisation ou la largeur de faisceau sur plusieurs gammes d’ondes différentes
  • H01Q 21/06 - Réseaux d'unités d'antennes, de même polarisation, excitées individuellement et espacées entre elles
  • H01Q 25/00 - Antennes ou systèmes d'antennes fournissant au moins deux diagrammes de rayonnement
  • H04B 7/0426 - Distribution de puissance

4.

Method and Apparatus for Handling Communications Between Spacecraft Operating in an Orbital Environment and Terrestrial Telecommunications Devices That Use Terrestrial Base Station Communications

      
Numéro d'application 18542138
Statut En instance
Date de dépôt 2023-12-15
Date de la première publication 2024-04-25
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps

5.

Messaging from an orbital base station to cellular user equipment applications with message processing via a card operating system

      
Numéro d'application 18474067
Numéro de brevet 12225559
Statut Délivré - en vigueur
Date de dépôt 2023-09-25
Date de la première publication 2024-03-14
Date d'octroi 2025-02-11
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Liu, Zheng
  • Khafagy, Mahmoud
  • Harris, Martin

Abrégé

An electronic user device includes inclusion list storage with electronically readable memory, for storing an inclusion list and the inclusion list indicating included logical IDs. The device also has a security module app that receives a cellular broadcast message and extracts logical IDs therefrom. This processes a targeted cellular broadcast message embedded in the payload of the cellular broadcast message, based on whether a logical ID, also embedded in the payload, of the targeted cellular broadcast message is on the inclusion list. It then formats it for consumption by an electronic user device app that receives data via a data channel when available.

Classes IPC  ?

  • H04W 4/00 - Services spécialement adaptés aux réseaux de télécommunications sans filLeurs installations
  • H04B 7/185 - Stations spatiales ou aériennes
  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04W 12/73 - Identité logique du point d’accès
  • H04W 72/30 - Gestion des ressources des services de diffusion

6.

ORBITAL OR OTHER NON-TERRESTRIAL BASE STATION PREEMPTION AND/OR REPLACEMENT UPON TERRESTRIAL BASE STATION INCAPACITY OR FAILURE

      
Numéro d'application US2023019408
Numéro de publication 2023/205422
Statut Délivré - en vigueur
Date de dépôt 2023-04-21
Date de publication 2023-10-26
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Khafagy, Mahmoud
  • Wilkus, Stephen A.

Abrégé

A method is disclosed for providing backup network services in a communications network used by mobile terminals such as cellular telephones. The method includes receiving information regarding a terrestrial base station of the communications network and, using a non-terrestrial base station (NTBS) such as an orbiting satellite, detecting an incapacity of the terrestrial base station. The NTBS identifies a second NTBS (e.g., a second satellite) within communications range to provide backup service to the communications network. The second NTBS is then introduced as a new base station of the communications network. The second NIBS can then substitute for the incapacitated terrestrial base station to carry traffic between at least one mobile terminal and the communications network.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/04 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées
  • H04B 1/74 - Détails des systèmes de transmission, non couverts par l'un des groupes Détails des systèmes de transmission non caractérisés par le milieu utilisé pour la transmission pour augmenter la fiabilité, p. ex. en utilisant des canaux ou des appareils supplémentaires ou de réserve
  • H04Q 3/60 - Dispositions produisant une connexion entre un central principal et une sous-station ou satellite pour connecter des satellites ou concentrateurs qui relient une ou plusieurs lignes de central à un groupe de lignes locales

7.

Orbital or Other Non-Terrestrial Base Station Preemption and/or Replacement Upon Terrestrial Base Station Incapacity or Failure

      
Numéro d'application 18304221
Statut En instance
Date de dépôt 2023-04-20
Date de la première publication 2023-10-26
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Khafagy, Mahmoud
  • Wilkus, Stephen A.

Abrégé

A method is disclosed for providing backup network services in a communications network used by mobile terminals such as cellular telephones. The method includes receiving information regarding a terrestrial base station of the communications network and, using a non-terrestrial base station (NTBS) such as an orbiting satellite, detecting an incapacity of the terrestrial base station. The NTBS identifies a second NTBS (e.g., a second satellite) within communications range to provide backup service to the communications network. The second NTBS is then introduced as a new base station of the communications network. The second NTBS can then substitute for the incapacitated terrestrial base station to carry traffic between at least one mobile terminal and the communications network.

Classes IPC  ?

  • H04W 36/30 - La resélection étant déclenchée par des paramètres spécifiques par des données de mesure ou d’estimation de la qualité des liaisons

8.

Simplified inter-satellite link communications using orbital plane crossing to optimize inter-satellite data transfers

      
Numéro d'application 18053295
Numéro de brevet 12052088
Statut Délivré - en vigueur
Date de dépôt 2022-11-07
Date de la première publication 2023-08-24
Date d'octroi 2024-07-30
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

In a method and apparatus for inter-satellite communications, transmissions between a satellite and neighboring satellites that share an orbital plane occur via an aft antenna or a forward antenna and transmissions between the satellite and neighboring satellites that do not share an orbital plane occur via the aft antenna or the forward antenna timed during orbital plane crossings. This occurs even if the total path length and number of links is higher than inter-satellite communications that use side-to-side transfers.

Classes IPC  ?

9.

Method and apparatus for handling communications between spacecraft operating in an orbital environment and terrestrial telecommunications devices that use terrestrial base station communications

      
Numéro d'application 18159044
Numéro de brevet 11876601
Statut Délivré - en vigueur
Date de dépôt 2023-01-24
Date de la première publication 2023-07-27
Date d'octroi 2024-01-16
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04W 84/06 - Réseaux aériens ou satellitaires

10.

Orbital Base Station Filtering of Interference from Terrestrial-Terrestrial Communications of Devices That Use Protocols in Common with Orbital-Terrestrial Communications

      
Numéro d'application 18161000
Statut En instance
Date de dépôt 2023-01-27
Date de la première publication 2023-07-27
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Jackson, Kevin
  • Liu, Zheng
  • Gerber, Andrew J.

Abrégé

An orbiting multiple access transceiver communicates with terrestrial mobile stations which are also capable of communicating with terrestrial base stations. The multiple access transceiver is configured to sample a signal when a terrestrial mobile station of interest is not transmitting to produce a sample signal. The sample signal may be processed to produce an out-of-phase signal that may be applied to a signal when the terrestrial mobile station of interest is transmitting to produce a clearer signal from the terrestrial mobile station of interest.

Classes IPC  ?

11.

Receiver-Based Computation of Transmitter Parameters and State for Communications Beyond Design Ranges of a Cellular Network Protocol

      
Numéro d'application 18059946
Statut En instance
Date de dépôt 2022-11-29
Date de la première publication 2023-06-08
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Buvarp, Anders
  • Liu, James

Abrégé

A telecommunications receiver is adapted to communicate with mobile devices that operate according to a protocol where the telecommunications receiver operates outside of expected ranges for the protocol but modifies its communications with mobile devices to appear to those mobile devices as being within the expected ranges. To determine what modifications to make to transmissions, the telecommunication receiver processes signals from mobile devices to determine where a communications channel is relative to the expected ranges and uses that information to modify transmissions to mobile devices. The expected ranges might relate to maximum distance between telecommunications receiver and a mobile device, maximum relative velocity, power etc. Determining a relative velocity, and therefore a Doppler shift, can be done by determining a fractional frequency offset, determining an expected subchannel, and determining an integer frequency offset based on the expected subchannel carrier frequency and the measured carrier frequency.

Classes IPC  ?

  • H04W 8/22 - Traitement ou transfert des données du terminal, p. ex. statut ou capacités physiques

12.

Orbital base station filtering of interference from terrestrial-terrestrial communications of devices that use protocols in common with orbital-terrestrial communications

      
Numéro d'application 17167711
Numéro de brevet 11606138
Statut Délivré - en vigueur
Date de dépôt 2021-02-04
Date de la première publication 2023-03-14
Date d'octroi 2023-03-14
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Jackson, Kevin
  • Liu, Zheng
  • Gerber, Andrew J.

Abrégé

An orbiting multiple access transceiver communicates with terrestrial mobile stations which are also capable of communicating with terrestrial base stations. The multiple access transceiver is configured to sample a signal when a terrestrial mobile station of interest is not transmitting to produce a sample signal. The sample signal may be processed to produce an out-of-phase signal that may be applied to a signal when the terrestrial mobile station of interest is transmitting to produce a clearer signal from the terrestrial mobile station of interest.

Classes IPC  ?

13.

Method for Interference Minimization and Optimization of Orbital Mobile Cellular Services

      
Numéro d'application 17742339
Statut En instance
Date de dépôt 2022-05-11
Date de la première publication 2022-11-17
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Miller, Charles E.

Abrégé

A process for computing and evaluating impact of interference presented by an orbital cellular service augmentation network operating to provide service that might overlap with a terrestrial network is disclosed. A process for eliminating, minimize, and/or reducing risk or probability of harmful interference can be provided, such that the deployment of orbital mobile cells can augment the terrestrial network and/or its coverage map that might be provided by existing or future terrestrial cells/transmitters.

Classes IPC  ?

14.

METHOD FOR INTERFERENCE MINIMIZATION AND OPTIMIZATION OF ORBITAL MOBILE CELLULAR SERVICES

      
Numéro d'application US2022028855
Numéro de publication 2022/241050
Statut Délivré - en vigueur
Date de dépôt 2022-05-11
Date de publication 2022-11-17
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Miller, Charles E.

Abrégé

A process for computing and evaluating impact of interference presented by an orbital cellular service augmentation network operating to provide service that might overlap with a terrestrial network is disclosed. A process for eliminating, minimize, and/or reducing risk or probability of harmful interference can be provided, such that the deployment of orbital mobile cells can augment the terrestrial network and/or its coverage map that might be provided by existing or future terrestrial cells/transmitters.

Classes IPC  ?

15.

Method and system for providing authentication of a wireless device and cell broadcast service between wireless mobile devices and a satellite network

      
Numéro d'application 17494782
Numéro de brevet 11956629
Statut Délivré - en vigueur
Date de dépôt 2021-10-05
Date de la première publication 2022-07-28
Date d'octroi 2024-04-09
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Smith, Clint
  • Meyer, John
  • Surampudi, Purnima
  • Liu, James

Abrégé

Authenticating a mobile user device with a mobile network operator in advance of an MNO authentication request from the mobile user device can be done by a satellite network sending an authentication request to the MNO system, obtaining a set of authentication vectors related to the mobile user device, storing them into a proxy home location register, receiving the MNO authentication request from the mobile user device, generating an authentication request response based on the authentication vectors, sending the authentication request response to the mobile user device, receiving an authentication response including a received signed response, comparing the received signed response with the stored signed response, and if the received signed response and stored signed response match, deem that to be a successful authentication, add an MNO location update message to a request queue and forward the MNO location update message to the MNO system over the channel when available.

Classes IPC  ?

  • H04W 12/06 - Authentification
  • H04W 8/04 - Enregistrement dans un registre de localisation nominal ou un serveur d'abonnés locaux [HSS Home Subscriber Server]
  • H04W 84/06 - Réseaux aériens ou satellitaires

16.

SATELLITE COMMUNICATION SYSTEM TRANSMITTING NAVIGATION SIGNALS USING A WIDE BEAM AND DATA SIGNALS USING A DIRECTIVE BEAM

      
Numéro d'application US2022011501
Numéro de publication 2022/150518
Statut Délivré - en vigueur
Date de dépôt 2022-01-06
Date de publication 2022-07-14
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s) Speidel, Tyghe Robert

Abrégé

A satellite communications system can comprise at least one that satellite, an antenna structure deployed on the at least one satellite, and radio hardware coupled to the antenna structure that can provide for transmitting a first channel simultaneously with a second channel, wherein the first channel is transmitted using directive beams and the second channel is transmitted using a wide beam and wherein the directive beams are for data communication signals and the wide beam is for navigation signals.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04L 27/04 - Circuits de modulationCircuits émetteurs
  • H04L 27/12 - Circuits de modulationCircuits émetteurs

17.

Satellite communication system transmitting navigation signals using a wide beam and data signals using a directive beam

      
Numéro d'application 17570329
Numéro de brevet 11863250
Statut Délivré - en vigueur
Date de dépôt 2022-01-06
Date de la première publication 2022-07-07
Date d'octroi 2024-01-02
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s) Speidel, Tyghe Robert

Abrégé

A satellite communications system can comprise at least one that satellite, an antenna structure deployed on the at least one satellite, and radio hardware coupled to the antenna structure that can provide for transmitting a first channel simultaneously with a second channel, wherein the first channel is transmitted using directive beams and the second channel is transmitted using a wide beam and wherein the directive beams are for data communication signals and the wide beam is for navigation signals.

Classes IPC  ?

  • H04B 7/0408 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées utilisant plusieurs faisceaux, c.-à-d. diversité de faisceaux
  • H04B 7/0426 - Distribution de puissance
  • H01Q 1/28 - Adaptation pour l'utilisation dans ou sur les avions, les missiles, les satellites ou les ballons
  • H01Q 25/00 - Antennes ou systèmes d'antennes fournissant au moins deux diagrammes de rayonnement
  • H01Q 21/06 - Réseaux d'unités d'antennes, de même polarisation, excitées individuellement et espacées entre elles
  • H01Q 5/28 - Dispositions pour régler la polarisation ou la largeur de faisceau sur plusieurs gammes d’ondes différentes

18.

METHOD AND SYSTEM FOR PROVIDING AUTHENTICATION OF A WIRELESS DEVICE AND CELL BROADCAST SERVICE BETWEEN WIRELESS MOBILE DEVICES AND A SATELLITE NETWORK

      
Numéro d'application US2021053758
Numéro de publication 2022/076548
Statut Délivré - en vigueur
Date de dépôt 2021-10-06
Date de publication 2022-04-14
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Smith, Clint
  • Meyer, John
  • Surampudi, Purnima
  • Liu, James

Abrégé

Authenticating a mobile user device with a mobile network operator in advance of an MNO authentication request from the mobile user device can be done by a satellite network sending an authentication request to the MNO system, obtaining a set of authentication vectors related to the mobile user device, storing them into a proxy home location register, receiving the MNO authentication request from the mobile user device, generating an authentication request response based on the authentication vectors, sending the authentication request response to the mobile user device, receiving an authentication response including a received signed response, comparing the received signed response with the stored signed response, and if the received signed response and stored signed response match, deem that to be a successful authentication, add an MNO location update message to a request queue and forward the MNO location update message to the MNO system over the channel when available.

Classes IPC  ?

19.

Cellular core network and radio access network infrastructure and management in space

      
Numéro d'application 17274374
Numéro de brevet 12040880
Statut Délivré - en vigueur
Date de dépôt 2019-09-06
Date de la première publication 2022-02-17
Date d'octroi 2024-07-16
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Miller, Charles E.

Abrégé

A cellular network management system manages terrestrial base station communications and orbital base station communications with user equipment to provide wireless service and allocate links among terrestrial base stations and orbital base stations according to base station availability determined from state space predictions.

Classes IPC  ?

20.

Receiver-based computation of transmitter parameters and state for communications beyond design ranges of a cellular network protocol

      
Numéro d'application 17387974
Numéro de brevet 11546726
Statut Délivré - en vigueur
Date de dépôt 2021-07-28
Date de la première publication 2022-02-03
Date d'octroi 2023-01-03
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Buvarp, Anders
  • Liu, James

Abrégé

A telecommunications receiver is adapted to communicate with mobile devices that operate according to a protocol where the telecommunications receiver operates outside of expected ranges for the protocol but modifies its communications with mobile devices to appear to those mobile devices as being within the expected ranges. To determine what modifications to make to transmissions, the telecommunication receiver processes signals from mobile devices to determine where a communications channel is relative to the expected ranges and uses that information to modify transmissions to mobile devices. The expected ranges might relate to maximum distance between telecommunications receiver and a mobile device, maximum relative velocity, power etc. Determining a relative velocity, and therefore a Doppler shift, can be done by determining a fractional frequency offset, determining an expected subchannel, and determining an integer frequency offset based on the expected subchannel carrier frequency and the measured carrier frequency.

Classes IPC  ?

  • H04W 4/02 - Services utilisant des informations de localisation
  • H04W 80/00 - Protocoles de réseaux sans fil ou adaptations de protocoles à un fonctionnement sans fil
  • H04L 27/26 - Systèmes utilisant des codes à fréquences multiples
  • H04W 64/00 - Localisation d'utilisateurs ou de terminaux pour la gestion du réseau, p. ex. gestion de la mobilité

21.

RECEIVER-BASED COMPUTATION OF TRANSMITTER PARAMETERS AND STATE FOR COMMUNICATIONS BEYOND DESIGN RANGES OF A CELLULAR NETWORK PROTOCOL

      
Numéro d'application US2021043561
Numéro de publication 2022/026616
Statut Délivré - en vigueur
Date de dépôt 2021-07-28
Date de publication 2022-02-03
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Buverp, Anders
  • Liu, James

Abrégé

A telecommunications receiver is adapted to communicate with mobile devices that operate according to a protocol where the telecommunications receiver operates outside of expected ranges for the protocol but modifies its communications with mobile devices to appear to those mobile devices as being within the expected ranges. To determine what modifications to make to transmissions, the telecommunication receiver processes signals from mobile devices to determine where a communications channel is relative to the expected ranges and uses that information to modify transmissions to mobile devices. The expected ranges might relate to maximum distance between telecommunications receiver and a mobile device, maximum relative velocity, power etc. Determining a relative velocity, and therefore a Doppler shift, can be done by determining a fractional frequency offset, determining an expected subchannel, and determining an integer frequency offset based on the expected subchannel carrier frequency and the measured carrier frequency.

Classes IPC  ?

  • H04W 4/00 - Services spécialement adaptés aux réseaux de télécommunications sans filLeurs installations
  • H04J 3/16 - Systèmes multiplex à division de temps dans lesquels le temps attribué à chacun des canaux au cours d'un cycle de transmission est variable, p. ex. pour tenir compte de la complexité variable des signaux, pour adapter le nombre de canaux transmis

22.

Simplified inter-satellite link communications using orbital plane crossing to optimize inter-satellite data transfers

      
Numéro d'application 16920319
Numéro de brevet 11522604
Statut Délivré - en vigueur
Date de dépôt 2020-07-02
Date de la première publication 2022-01-20
Date d'octroi 2022-12-06
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

In a method and apparatus for inter-satellite communications, transmissions between a satellite and neighboring satellites that share an orbital plane occur via an aft antenna or a forward antenna and transmissions between the satellite and neighboring satellites that do not share an orbital plane occur via the aft antenna or the forward antenna timed during orbital plane crossings. This occurs even if the total path length and number of links is higher than inter-satellite communications that use side-to-side transfers.

Classes IPC  ?

23.

Method and apparatus for handling communications between spacecraft operating in an orbital environment and terrestrial telecommunications devices that use terrestrial base station communications

      
Numéro d'application 17234673
Numéro de brevet 11595114
Statut Délivré - en vigueur
Date de dépôt 2021-04-19
Date de la première publication 2022-01-06
Date d'octroi 2023-02-28
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04W 84/06 - Réseaux aériens ou satellitaires

24.

MESSAGING FROM AN ORBITAL BASE STATION TO CELLULAR USER EQUIPMENT APPLICATIONS WITH MESSAGE PROCESSING VIA A CARD OPERATING SYSTEM

      
Numéro d'application US2021032948
Numéro de publication 2021/236628
Statut Délivré - en vigueur
Date de dépôt 2021-05-18
Date de publication 2021-11-25
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Liu, Zheng
  • Khafagy, Mahmoud

Abrégé

An electronic user device includes inclusion list storage with electronically readable memory, for storing an inclusion list and the inclusion list indicating included logical IDs. The device also has a security module app that receives a cellular broadcast message and extracts logical IDs therefrom. This processes a targeted cellular broadcast message embedded in the payload of the cellular broadcast message, based on whether a logical ID, also embedded in the payload, of the targeted cellular broadcast message is on the inclusion list. It then formats it for consumption by an electronic user device app that receives data via a data channel when available.

Classes IPC  ?

  • H04W 4/06 - Répartition sélective de services de diffusion, p. ex. service de diffusion/multidiffusion multimédiaServices à des groupes d’utilisateursServices d’appel sélectif unidirectionnel
  • H04W 12/06 - Authentification
  • H04W 72/04 - Affectation de ressources sans fil
  • H04W 4/70 - Services pour la communication de machine à machine ou la communication de type machine

25.

Messaging from an orbital base station to cellular user equipment applications with message processing via a card operating system

      
Numéro d'application 17322826
Numéro de brevet 11800539
Statut Délivré - en vigueur
Date de dépôt 2021-05-17
Date de la première publication 2021-11-18
Date d'octroi 2023-10-24
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Liu, Zheng
  • Khafagy, Mahmoud
  • Harris, Martin

Abrégé

An electronic user device includes inclusion list storage with electronically readable memory, for storing an inclusion list and the inclusion list indicating included logical IDs. The device also has a security module app that receives a cellular broadcast message and extracts logical IDs therefrom. This processes a targeted cellular broadcast message embedded in the payload of the cellular broadcast message, based on whether a logical ID, also embedded in the payload, of the targeted cellular broadcast message is on the inclusion list. It then formats it for consumption by an electronic user device app that receives data via a data channel when available.

Classes IPC  ?

  • H04W 4/00 - Services spécialement adaptés aux réseaux de télécommunications sans filLeurs installations
  • H04W 72/30 - Gestion des ressources des services de diffusion
  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04W 12/73 - Identité logique du point d’accès
  • H04B 7/185 - Stations spatiales ou aériennes

26.

Method and apparatus for handling communications between spacecraft operating in an orbital environment and terrestrial telecommunications devices that use terrestrial base station communications

      
Numéro d'application 16721012
Numéro de brevet 10985834
Statut Délivré - en vigueur
Date de dépôt 2019-12-19
Date de la première publication 2020-07-30
Date d'octroi 2021-04-20
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04W 84/06 - Réseaux aériens ou satellitaires

27.

CELLULAR CORE NETWORK AND RADIO ACCESS NETWORK INFRASTRUCTURE AND MANAGEMENT IN SPACE

      
Numéro d'application US2019050030
Numéro de publication 2020/051508
Statut Délivré - en vigueur
Date de dépôt 2019-09-06
Date de publication 2020-03-12
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Miller, Charles E.

Abrégé

A cellular network management system manages terrestrial base station communications and orbital base station communications with user equipment to provide wireless service and allocate links among terrestrial base stations and orbital base stations according to base station availability determined from state space predictions.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04W 4/021 - Services concernant des domaines particuliers, p. ex. services de points d’intérêt, services sur place ou géorepères
  • H04W 16/14 - Dispositions de partage du spectre de fréquence
  • H04W 72/04 - Affectation de ressources sans fil
  • H04W 84/06 - Réseaux aériens ou satellitaires

28.

Orbital base station filtering of interference from terrestrial-terrestrial communications of devices that use protocols in common with orbital-terrestrial communications

      
Numéro d'application 15963903
Numéro de brevet 10951305
Statut Délivré - en vigueur
Date de dépôt 2018-04-26
Date de la première publication 2019-10-31
Date d'octroi 2021-03-16
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Jackson, Kevin
  • Liu, Zheng
  • Gerber, Andrew J.

Abrégé

An orbiting multiple access transceiver communicates with terrestrial mobile stations which are also capable of communicating with terrestrial base stations. The multiple access transceiver is configured to sample a signal when a terrestrial mobile station of interest is not transmitting to produce a sample signal. The sample signal may be processed to produce an out-of-phase signal that may be applied to a signal when the terrestrial mobile station of interest is transmitting to produce a clearer signal from the terrestrial mobile station of interest.

Classes IPC  ?

29.

ORBITAL BASE STATION FILTERING OF INTERFERENCE FROM TERRESRIAL-TERRESTRIAL COMMUNICATIONS

      
Numéro d'application US2019029411
Numéro de publication 2019/210211
Statut Délivré - en vigueur
Date de dépôt 2019-04-26
Date de publication 2019-10-31
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Jackson, Kevin
  • Liu, Zheng
  • Gerber, Andrew J.

Abrégé

An orbiting multiple access transceiver communicates with terrestrial mobile stations which are also capable of communicating with terrestrial base stations. The multiple access transceiver is configured to sample a signal when a terrestrial mobile station of interest is not transmitting to produce a sample signal. The sample signal may be processed to produce an out-of-phase signal that may be applied to a signal when the terrestrial mobile station of interest is transmitting to produce a clearer signal from the terrestrial mobile station of interest.

Classes IPC  ?

30.

Lynk

      
Numéro d'application 1494095
Statut Enregistrée
Date de dépôt 2019-08-28
Date d'enregistrement 2019-08-28
Propriétaire Lynk Global, Inc. (USA)
Classes de Nice  ? 38 - Services de télécommunications

Produits et services

Telecommunications services, namely, providing satellite-based communication network service; telecommunication services, namely, transmission of messages, voice, data, graphics, sound and video by means of satellite networks; satellite-based mobile telecommunications services.

31.

Lynk

      
Numéro d'application 199200800
Statut Enregistrée
Date de dépôt 2019-08-28
Date d'enregistrement 2024-09-30
Propriétaire Lynk Global, Inc. (USA)
Classes de Nice  ? 38 - Services de télécommunications

Produits et services

(1) Telecommunications services, namely, providing satellite-based telephone communication network service; telecommunication services, namely, transmission of messages, voice, data, graphics, sound and video, namely, cellular phone services, text messages, wireless digital messages, voice messages, voice over Internet Protocol, teleconferencing and video conferencing, video calls, email and facsimile, digital music, podcasts, radio and television programs by means of satellite networks; providing internet access by means of satellite-based networks; providing access to a global computer network via satellite; telephone carrier services provided by means of satellite transmission; cellular phone network and text messaging services provided by means of satellite transmission.

32.

LYNK

      
Numéro de série 88597055
Statut En instance
Date de dépôt 2019-08-28
Propriétaire Lynk Global, Inc. ()
Classes de Nice  ? 38 - Services de télécommunications

Produits et services

telecommunications services, namely, providing satellite communications services; telecommunication services, namely, transmission of messages, voice, data, graphics, sound and video by means of satellite networks; satellite-based mobile telecommunications services, namely, satellite-based mobile telephone communications services

33.

LYNK

      
Numéro de série 88597073
Statut En instance
Date de dépôt 2019-08-28
Propriétaire Lynk Global, Inc. ()
Classes de Nice  ? 38 - Services de télécommunications

Produits et services

telecommunications services, namely, providing satellite communications services; telecommunication services, namely, transmission of messages, voice, data, graphics, sound and video by means of satellite networks; satellite-based mobile telecommunications services, namely, satellite-based mobile telephone communications services

34.

Method and apparatus for handling communications between spacecraft operating in an orbital environment and terrestrial telecommunications devices that use terrestrial base station communications

      
Numéro d'application 16103719
Numéro de brevet 10523313
Statut Délivré - en vigueur
Date de dépôt 2018-08-14
Date de la première publication 2019-06-27
Date d'octroi 2019-12-31
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04W 84/06 - Réseaux aériens ou satellitaires

35.

LYNK

      
Numéro de série 88472332
Statut En instance
Date de dépôt 2019-06-13
Propriétaire LYNK GLOBAL, INC. ()
Classes de Nice  ? 38 - Services de télécommunications

Produits et services

telecommunications services, namely, providing satellite communications services; telecommunication services, namely, transmission of messages, voice, data, graphics, sound and video by means of satellite networks; satellite-based mobile telecommunications services, namely, satellite-based mobile telephone communications services

36.

Method and apparatus for handling communications between spacecraft operating in an orbital environment and terrestrial telecommunications devices that use terrestrial base station communications

      
Numéro d'application 15916909
Numéro de brevet 10084535
Statut Délivré - en vigueur
Date de dépôt 2018-03-09
Date de la première publication 2018-09-25
Date d'octroi 2018-09-25
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

  • H04B 7/01 - Réduction du décalage de phase
  • H04B 7/185 - Stations spatiales ou aériennes
  • H04B 7/212 - Accès multiple par répartition dans le temps
  • H04W 84/06 - Réseaux aériens ou satellitaires

37.

METHOD AND APPARATUS FOR HANDLING COMMUNICATIONS BETWEEN SPACECRAFT OPERATING IN AN ORBITAL ENVIRONMENT AND TERRESTRIAL TELECOMMUNICATIONS DEVICES

      
Numéro de document 03054931
Statut Délivré - en vigueur
Date de dépôt 2018-02-28
Date de disponibilité au public 2018-09-07
Date d'octroi 2021-11-23
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

38.

METHOD AND APPARATUS FOR HANDLING COMMUNICATIONS BETWEEN SPACECRAFT OPERATING IN AN ORBITAL ENVIRONMENT AND TERRESTRIAL TELECOMMUNICATIONS DEVICES

      
Numéro de document 03076387
Statut En instance
Date de dépôt 2018-02-28
Date de disponibilité au public 2018-09-07
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple- access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

39.

METHOD AND APPARATUS FOR HANDLING COMMUNICATIONS BETWEEN SPACECRAFT OPERATING IN AN ORBITAL ENVIRONMENT AND TERRESTRIAL TELECOMMUNICATIONS DEVICES THAT USE TERRESTRIAL BASE STATION COMMUNICATIONS

      
Numéro d'application 15857073
Statut En instance
Date de dépôt 2017-12-28
Date de la première publication 2018-09-06
Propriétaire LYNK GLOBAL, INC. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

A multiple-access transceiver handles communications with mobile stations in environments that exceed mobile station design assumptions without necessarily requiring modifications to the mobile stations. One such environment is in Earth orbit. The multiple-access transceiver is adapted to close communications with mobile stations while exceeding mobile station design assumptions, such as greater distance, greater relative motion and/or other conditions commonly found where functionality of a terrestrial transceiver is to be performed by an orbital transceiver. The orbital transceiver might include a data parser that parses a frame data structure, a signal timing module that adjusts timing based on orbit to terrestrial propagation delays, frequency shifters and a programmable radio capable of communicating from the Earth orbit that uses a multiple-access protocol such that the communication is compatible with, or appears to the terrestrial mobile station to be, communication between a terrestrial cellular base station and the terrestrial mobile station.

Classes IPC  ?

40.

Simplified inter-satellite link communications using orbital plane crossing to optimize inter-satellite data transfers

      
Numéro d'application 15910959
Numéro de brevet 10742311
Statut Délivré - en vigueur
Date de dépôt 2018-03-02
Date de la première publication 2018-09-06
Date d'octroi 2020-08-11
Propriétaire Lynk Global, Inc. (USA)
Inventeur(s)
  • Speidel, Tyghe Robert
  • Gerber, Andrew J.

Abrégé

In a method and apparatus for inter-satellite communications, transmissions between a satellite and neighboring satellites that share an orbital plane occur via an aft antenna or a forward antenna and transmissions between the satellite and neighboring satellites that do not share an orbital plane occur via the aft antenna or the forward antenna timed during orbital plane crossings. This occurs even if the total path length and number of links is higher than inter-satellite communications that use side-to-side transfers.

Classes IPC  ?