ANDRO Computational Solutions, LLC

United States of America

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        Patent 13
        Trademark 5
Date
2026 (YTD) 1
2025 2
2024 2
2023 3
2022 1
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IPC Class
G06N 3/08 - Learning methods 2
H04B 1/04 - Circuits 2
H04L 9/40 - Network security protocols 2
H04W 12/08 - Access security 2
H04W 12/79 - Radio fingerprint 2
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NICE Class
09 - Scientific and electric apparatus and instruments 3
42 - Scientific, technological and industrial services, research and design 2
Status
Pending 4
Registered / In Force 14
Found results for

1.

REDUCTION OF SCATTERING EFFECTS IN SYNTHETIC APERTURE RADAR WITH MACHINE LEARNING

      
Application Number 19263124
Status Pending
Filing Date 2025-07-08
First Publication Date 2026-01-08
Owner Andro Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Jithin
  • Jagannath, Anu

Abstract

Embodiments of the disclosure provide a method and system to reduce scattering effects such as multiplicative speckle noise in synthetic aperture radar (SAR) with machine learning. Methods of the disclosure include converting an input image into an enhanced image via an encoder-decoder network having an adversarial learning system. Methods of the disclosure also include identifying a target within the enhanced image by separating the enhanced image into a plurality of segments via a tracker module having at least a spatial attention layer, a channel attention layer, and a depth-wise convolution.

IPC Classes  ?

  • G01S 7/41 - Details of systems according to groups , , of systems according to group using analysis of echo signal for target characterisationTarget signatureTarget cross-section
  • G01S 13/66 - Radar-tracking systemsAnalogous systems
  • G01S 13/90 - Radar or analogous systems, specially adapted for specific applications for mapping or imaging using synthetic aperture techniques

2.

RADIO FREQUENCY FINGERPRINTING USING ATTENTIONAL MACHINE LEARNING

      
Application Number 19234421
Status Pending
Filing Date 2025-06-11
First Publication Date 2025-10-02
Owner Andro Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Anu
  • Jagannath, Jithin
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide a sensitivity enhancing radio frequency identification technique using machine learning. A method according to the disclosure includes obtaining an input signal associated with a radio frequency (RF) transmission; separately extracting at least two features from a group comprising: spatial domain features, time-frequency domain features, and temporal domain features from the input signal; processing the at least two features to generate an attentional vector; and predicting at least one descriptor for an emitter of the RF transmission based on the attentional vector.

IPC Classes  ?

3.

MACHINE LEARNING FRAMEWORK FOR CONTROL OF AUTONOMOUS AGENT OPERATING IN DYNAMIC ENVIRONMENT

      
Application Number 17200106
Status Pending
Filing Date 2021-03-12
First Publication Date 2025-06-05
Owner ANDRO Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Jithin
  • Polosky, Nicholas Joseph
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide a machine learning framework to control an autonomous agent in a dynamic environment. A system according to the disclosure includes a sensor coupled to the autonomous agent to receive a set of inputs. At least one actuator causes the autonomous agent to perform an action. A controller causes the actuator to perform an action based on the inputs and an operative policy. The controller determines whether the operative policy is terminated, based on the set of inputs. Upon terminating the operative policy, the controller evaluates several candidate policies and selects one of the candidate policies as a new operative policy.

IPC Classes  ?

  • G05D 1/656 - Interaction with payloads or external entities
  • G05B 13/02 - Adaptive control systems, i.e. systems automatically adjusting themselves to have a performance which is optimum according to some preassigned criterion electric
  • G05D 101/15 - Details of software or hardware architectures used for the control of position using artificial intelligence [AI] techniques using machine learning, e.g. neural networks

4.

MACHINE LEARNING SYSTEM FOR IDENTIFYING AND COUNTERING NON-FRIENDLY RADAR NETWORKS

      
Application Number 18596893
Status Pending
Filing Date 2024-03-06
First Publication Date 2024-09-12
Owner Andro Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Jithin
  • Polosky, Nicholas Joseph
  • Drozd, Andrew Louis
  • Furman, Sean
  • Gwin, Tyler

Abstract

Embodiments of the disclosure provide a machine learning system for identifying and countering non-friendly radar networks. Methods of the disclosure include generating, in a machine learning module, an operational model of a radar network within an environment. An autonomous agent within the environment detects the radar network. The method also includes classifying the radar network as friendly or non-friendly based on the operational model. The method also includes generating, in a reinforcement learning module, a counter-radar maneuver based on the operational model in response to classifying the radar network as non-friendly. Embodiments of the disclosure implement the counter-radar maneuver via the autonomous agent in communication with the reinforcement learning module.

IPC Classes  ?

  • G01S 7/38 - Jamming means, e.g. producing false echoes
  • G01S 7/02 - Details of systems according to groups , , of systems according to group

5.

Identifying transponder hardware or waveform in wireless network via machine learning module

      
Application Number 18047913
Grant Number 12536438
Status In Force
Filing Date 2022-10-19
First Publication Date 2024-06-06
Grant Date 2026-01-27
Owner Andro Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Anu
  • Jagannath, Jithin
  • Drozd, Andrew Louis

Abstract

The disclosure provides processes to generate an identification tag for a transponder in a wireless network via a machine learning module. Methods of the disclosure include capturing, via a wireless receiver within a wireless network, a plurality of time-domain communication samples of a transponder operating within the wireless network. A multi-dimensional tensor is generated, indicating a plurality of features of the time-domain communication samples of the transponder. A machine learning module converts the multi-dimensional tensor into a one-dimensional feature vector indicating the plurality of features of the time-domain communication samples. The machine learning module extracts a hardware identification feature for the transponder from the one-dimensional feature vector. The machine learning module includes: an embedding component for extracting the one-dimensional feature vector from a multi-dimensional tensor indicating a set of hardware intrinsic features; or an attentional component for deducing a hardware signature from the one-dimensional feature vector.

IPC Classes  ?

  • G06F 7/00 - Methods or arrangements for processing data by operating upon the order or content of the data handled
  • G06K 7/10 - Methods or arrangements for sensing record carriers by electromagnetic radiation, e.g. optical sensingMethods or arrangements for sensing record carriers by corpuscular radiation
  • G06N 3/08 - Learning methods
  • H04B 1/59 - RespondersTransponders

6.

Authentication of device in network using cryptographic certificate

      
Application Number 18165667
Grant Number 12425391
Status In Force
Filing Date 2023-02-07
First Publication Date 2023-08-10
Grant Date 2025-09-23
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Ramezanpour, Keyvan
  • Jagannath, Jithin
  • Jagannath, Anu
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide distributed authentication with network segmentation and dynamic authorization for networks. The system may include a device within a network of devices. An identifier is within the device and includes a cryptographic certificate. The device is configured to transmit the identifier to an authenticator as a security proof. The authenticator is configured to disable the device from performing at least one operation within the network before verifying an identity of the device via the identifier.

IPC Classes  ?

7.

Radio frequency fingerprinting using attentional machine learning

      
Application Number 18057830
Grant Number 12369038
Status In Force
Filing Date 2022-11-22
First Publication Date 2023-05-25
Grant Date 2025-07-22
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Jagannath, Anu
  • Jagannath, Jithin
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide a sensitivity enhancing radio frequency identification technique using machine learning. A method according to the disclosure includes obtaining an input signal associated with a radio frequency (RF) transmission; separately extracting spatial domain features, time-frequency domain features, and temporal domain features from the input signal; processing the spatial domain features, time-frequency domain features, and temporal domain features to generate an attentional vector; and predicting at least one descriptor for an emitter of the RF transmission based on the attentional vector.

IPC Classes  ?

8.

System and methodology for secure coexistence between wireless fidelity and cellular networks

      
Application Number 17822458
Grant Number 12556913
Status In Force
Filing Date 2022-08-26
First Publication Date 2023-03-09
Grant Date 2026-02-17
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Jagannath, Jithin
  • Jagannath, Anu
  • Drozd, Andrew Louis
  • Ramezanpour, Keyvan

Abstract

Embodiments of the disclosure provide a system and methodology for secure coexistence between wireless fidelity and cellular networks. Methods include: determining whether a wireless fidelity (WiFi) device is sharing a spectrum of a network; and adjusting a parameter of a cellular device sharing the spectrum in response to determining that the WiFi device is sharing the spectrum, wherein the parameter includes a modulation and coding scheme or a transmission power of the cellular device. Methods further include controlling admission of users to a communications network, including: determining whether an incoming transmission is an authentication request from a new user; issuing a temporary authentication to the user to transmit a set of access requirements to the user; determining whether a reply from the user complies with the set of access requirements; and issuing a long-term authentication to the user in response to the reply complying with the set of access requirements.

IPC Classes  ?

  • H04W 12/06 - Authentication
  • H04W 12/08 - Access security
  • H04W 74/0808 - Non-scheduled access, e.g. ALOHA using carrier sensing, e.g. carrier sense multiple access [CSMA]
  • H04W 16/14 - Spectrum sharing arrangements

9.

Zero trust architecture for networks employing machine learning engines

      
Application Number 17724071
Grant Number 12063241
Status In Force
Filing Date 2022-04-19
First Publication Date 2022-10-27
Grant Date 2024-08-13
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Drozd, Andrew Louis
  • Jagannath, Jithin
  • Jagannath, Anu
  • Ramezanpour, Keyvan

Abstract

A system for governing access to a network environment, including: at least one communication node communicatively coupled to a network infrastructure; a network assurance agent configured to monitor the at least one communication node, wherein the network assurance agent performs actions including: generating, in response to an access request for a network resource from the at least one communication node, an environmental model of the at least one communication node relative to the network environment, wherein the environmental model includes operational data of the at least one communication node or at least one other communication node in the network environment, calculating a risk score for the at least one communication node via a machine learning algorithm, based on the environmental model, and granting or denying the access request based on the risk score.

IPC Classes  ?

10.

Transceiver with machine learning for generation of communication parameters and cognitive resource allocation

      
Application Number 17245156
Grant Number 11490273
Status In Force
Filing Date 2021-04-30
First Publication Date 2021-11-04
Grant Date 2022-11-01
Owner ANDRO Computational Solutions, LLC (USA)
Inventor
  • Jagannath, Jithin
  • Jagannath, Anu
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide a system for operating a radio frequency (RF) network having a plurality of communication nodes. A network transceiver communicates with communication nodes in the RF network. A computing device coupled to the network transceiver performs actions including: evaluating a state of the RF network using a machine learning model, based on a spectrum environment and a communication objective, generating a set of communication parameters based on the state of the RF network, causing the network transceiver to communicate with the a communication node using the generated set of communication parameters, and modifying the machine learning model based on a result of causing the network transceiver to communicate with the communication node.

IPC Classes  ?

  • H04W 24/02 - Arrangements for optimising operational condition
  • H04W 72/08 - Wireless resource allocation based on quality criteria

11.

Rate-2 complex space-time block codes for 3×3 and 4×4 MIMO systems

      
Application Number 16825226
Grant Number 11271681
Status In Force
Filing Date 2020-03-20
First Publication Date 2021-09-30
Grant Date 2022-03-08
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Jagannath, Anu
  • Jagannath, Jithin
  • Drozd, Andrew Louis

Abstract

Embodiments of the disclosure provide a transmission system, including: an encoder for encoding a set of information symbols into a set of encoded signals for transmission, wherein the encoder applies a full-diversity space-time block code (STBC) to the set of information symbols; and at least three antennas for transmitting the set of encoded signals over four epochs at a code rate of two.

IPC Classes  ?

  • H04L 1/06 - Arrangements for detecting or preventing errors in the information received by diversity reception using space diversity
  • H04B 7/0413 - MIMO systems
  • H04L 1/00 - Arrangements for detecting or preventing errors in the information received

12.

SPEARLINK

      
Serial Number 90104266
Status Registered
Filing Date 2020-08-10
Registration Date 2021-11-23
Owner ANDRO Computational Solutions, LLC ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Downloadable operational software for software defined radios; Software-defined radio (SDR)

13.

ARROWLINK

      
Serial Number 90104282
Status Registered
Filing Date 2020-08-10
Registration Date 2022-11-29
Owner ANDRO Computational Solutions, LLC ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Downloadable operational software for software defined radios; Software-defined radio (SDR)

14.

DEEPSPEC

      
Serial Number 90104302
Status Registered
Filing Date 2020-08-10
Registration Date 2024-03-05
Owner ANDRO Computational Solutions, LLC ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Downloadable operational software for software defined radios; Software-defined radio (SDR)

15.

Adjudication of access policies in wireless device network

      
Application Number 16548030
Grant Number 11272513
Status In Force
Filing Date 2019-08-22
First Publication Date 2020-02-27
Grant Date 2022-03-08
Owner ANDRO COMPUTATIONAL SOLUTIONS, LLC (USA)
Inventor
  • Drozd, Andrew Louis
  • Mccoy, Joseph Robert
  • Maracchion, Christopher Dean
  • Woods, Timothy Otis
  • Hrabik, Jr., John James
  • Furman, Sean Robert

Abstract

Methods and systems for controlling dynamic spectrum access (DSA) for the purposes of wirelessly communicating or exchanging data within a network environment are disclosed. Methods may include detecting, via at least one asset included in a wireless device network, at least one candidate asset attempting to enter the wireless device network from an external network, and constructing a spectrum profile for the wireless device network based on metadata for transactions between assets in the wireless device network. The method may also include applying an access policy including the spectrum profile to the at least one candidate asset within the wireless device network, and admitting the at least one candidate asset to the wireless device network in response to applying the access policy to the at least one candidate asset.

IPC Classes  ?

  • H04W 72/04 - Wireless resource allocation
  • H04L 27/00 - Modulated-carrier systems
  • H04W 8/00 - Network data management
  • H04W 4/70 - Services for machine-to-machine communication [M2M] or machine type communication [MTC]
  • H04W 48/16 - DiscoveringProcessing access restriction or access information
  • H04W 12/08 - Access security
  • H04M 15/00 - Arrangements for metering, time-control or time-indication
  • H04W 12/37 - Managing security policies for mobile devices or for controlling mobile applications
  • H04W 48/18 - Selecting a network or a communication service

16.

Vertebral assist spinal medical device

      
Application Number 16296729
Grant Number 10966757
Status In Force
Filing Date 2019-03-08
First Publication Date 2019-09-12
Grant Date 2021-04-06
Owner ANDRO COMPUTATIONAL SOLUTIONS LLC (USA)
Inventor
  • Drozd, Evan M.
  • Jagannath, Jithin
  • Polosky, Nicholas Joseph
  • Drozd, Andrew Louis
  • Garlington, Michael E.

Abstract

A vertebral assist device for monitoring, supporting, stabilizing, and adjusting vertebrae. An embodiment of the vertebral assist device includes: a plurality of vertebral support sections, each of the plurality of vertebral support sections configured to support a respective vertebra of a patient; an actuating system for interconnecting each adjacent pair of the plurality of vertebral support sections, the actuating system dynamically controlling an alignment of the plurality of vertebral support sections; and a control system for actively monitoring the alignment of the plurality of vertebral support sections and for directing the actuating system to dynamically adjust the alignment of the plurality of vertebral support sections until an alignment goal is achieved.

IPC Classes  ?

  • A61B 17/70 - Spinal positioners or stabilisers, e.g. stabilisers comprising fluid filler in an implant
  • A61F 2/48 - Operating or control means, e.g. from outside the body, control of sphincters
  • A61B 17/00 - Surgical instruments, devices or methods

17.

TRANSMISSION CYBERSPACE

      
Serial Number 86126294
Status Registered
Filing Date 2013-11-22
Registration Date 2014-12-09
Owner ANDRO Computational Solutions, LLC ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Computer programming and software design; Design and development of computer software; Design, development and implementation of software; Developing computer software

18.

TRANSMISSION HYPERSPACE

      
Serial Number 77838294
Status Registered
Filing Date 2009-09-30
Registration Date 2012-12-25
Owner ANDRO Computational Solutions, LLC ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Design and development of computer software; Design, development and implementation of software; Developing computer software