Patents Assigned to Hughes Network Systems
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Patent number: 11799543Abstract: A system and method for providing community-based broadband access are disclosed. The system is configured to provide private LTE based broadband access at remote areas that are served by satellite backhaul. The system is also configured to provide a community-based Wi-Fi like broadband service where users can purchase hourly, weekly, or monthly data packs as and when desired. The LTE base station, LTE core network, and satellite terminal included in the system are all deployed at the remote location to efficiently connect users to the internet over satellite backhaul. The system architecture further expands broadband reach for users in remote areas as compared to coverage with current satellite-based Community Wi-Fi hot spots, and provides an integrated backend system for LTE and Wi-Fi based access.Type: GrantFiled: May 21, 2021Date of Patent: October 24, 2023Assignee: HUGHES NETWORK SYSTEMS, LLCInventor: Bhanu Durvasula
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System and method to use machine learning to ensure proper installation and/or repair by technicians
Patent number: 11790521Abstract: A system for installation or repair work includes a mobile device and a central server. The mobile device includes a camera and a first processor. The first processor is configured to execute processing instructions including an algorithm to evaluate photographs recorded by the camera. The central server is configured to wirelessly communicate with the mobile device. The central server includes a second processor configured to execute control instructions stored on a second memory to cause the central server to: (i) receive at least one photograph evaluated by the first processor of the mobile device; (ii) perform machine learning using the at least one photograph to improve the algorithm used to evaluate the at least one photograph by the first processor; (iii) update the processing instructions using the improved algorithm; and (iv) transmit the updated processing instructions to the mobile device to enable evaluation of a subsequent photograph.Type: GrantFiled: April 10, 2020Date of Patent: October 17, 2023Assignee: HUGHES NETWORK SYSTEMS, LLCInventor: Anurag Bhatnagar -
Patent number: 11777760Abstract: Systems and methods for estimating the kind of traffic a VPN is carrying and determining which WAN connection to use for VPN network traffic to reduce usage costs while maintaining responsiveness in a VPN router or gateway. A VPN classifier examines VPN packets and estimates the type of traffic they are carrying and selects a policy for upstream or downstream traffic to determine which tunnel or tunnels to send network traffic. Further, policies may be applied to VPN packets as a function of usage knob.Type: GrantFiled: March 30, 2021Date of Patent: October 3, 2023Assignee: Hughes Network Systems, LLCInventor: Douglas Merrill Dillon
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Patent number: 11778508Abstract: A method for communicating with a legacy terminal supporting a legacy air interface and a new terminal supporting a next generation air interface including: assigning a same carrier to the legacy terminal and the new terminal; receiving a terminal identifier and an optional payload for transmission at a MAC/RLC layer; determining if the terminal identifier is associated with the legacy terminal or the new terminal; composing, based on the determining, a burst header; formatting, a burst including the burst header and the optional payload; and transmitting the burst. In the method, the burst header is set to one of the one or more valid burst headers when the burst is associated with the legacy terminal, and the burst header is set to one of the one or more undefined burst headers when the burst is associated with the new terminal.Type: GrantFiled: February 23, 2021Date of Patent: October 3, 2023Assignee: Hughes Network Systems, LLCInventors: James J. Jong, Channasandra Ravishankar, William Whitmarsh, Nassir Benammar, Santharam Gurumani, Pablo Valle, Jianxia Luo
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Patent number: 11777614Abstract: A system for a Rydberg atom based quantum communications transceiver is provided. The system may include a laser source for generating a photon. The system may also include one or more optical elements to create a pair of entangled photons from a generated photon, wherein the pair of entangled photons comprises a first entangled photon and a second entangled photon. The system may further include a radio-frequency (RF) based element to generate a quantum communication path from the pair of entangled photons by creating two Rydberg atom vapor cells (RAVC) that are entangled such that entangled photons may transfer or communicate their entangled state to Rydberg atoms within the Rydberg atom vapor cells (RAVCs) and form at least one entangled link with the other, the communication path comprising the least one entangled link. The system may also include one or more photon receivers, which may use at least one translation technique, to translate entangled state of each of the Rydberg atom vapor cells (RAVC).Type: GrantFiled: December 16, 2021Date of Patent: October 3, 2023Assignee: Hughes Network Systems, LLCInventor: Darren Scott Hamilton
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Patent number: 11777618Abstract: Techniques described herein provide phase and amplitude calibration of phased array antennas. In an N-by-M phased array having N*M channels, embodiments use aggregated measurements over multiple concurrently active channels to improve signal-to-leakage performance, while also using sequences of exclusion groups to yield an individualized calibration value for each channel (i.e., N*M individualized calibration values). For example, a J×K channel group of the array is selected in each of a sequence of measurement frames based on a calibration schema. Over J*K measurement sub-frames, a set of J*K aggregate measurements is obtained, each with different subsets of the channel group activated and excluded from the measurement. The aggregate calibration measurements can be used to compute J*K individualized calibration values, each for a channel of the channel group. In some implementations, each calibration value is computed as a complex value including both amplitude and phase calibrations information.Type: GrantFiled: December 27, 2021Date of Patent: October 3, 2023Assignee: Hughes Network Systems, LLCInventors: Xiaoling Huang, Channasandra Ravishankar
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Patent number: 11770779Abstract: A method and system to provide adaptive power control for a Wide Band Automatic Gain Control (WB-AGC) including: determining a signal is present when a power derivative of the signal ramps up; adapting a gain for an Automated Gain Control (AGC) when the signal is present; and disabling the adapting when the signal is not present.Type: GrantFiled: December 9, 2021Date of Patent: September 26, 2023Assignee: Hughes Network SystemsInventor: Jorge Cadena
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Patent number: 11770737Abstract: A system and method for beamforming beams including: matching weights T to a distribution of resources for each of the beams based on a traffic variation for each of the beams; calculating, with a signal processor for each of the beams based on the weights T, a power scalar ? and a weighted minimum mean squared error (WMMSE) matrix WWMSE; and transmitting/receiving the beams based on the power scalar ? and the WMMSE matrix WWMSE, where the power scalar ? satisfies a total power constraint of an antenna subsystem.Type: GrantFiled: November 16, 2021Date of Patent: September 26, 2023Assignee: Hughes Network Systems, LLCInventors: Udaya Bhaskar, Stanley Kay, Neal David Becker
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Patent number: 11770183Abstract: A system and method for compensating for attenuation of carrier power by a transmission path.Type: GrantFiled: November 21, 2022Date of Patent: September 26, 2023Assignee: Hughes Network Systems, LLCInventor: Rajeev Oza
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Publication number: 20230299497Abstract: A higher order Floquet-mode structure (HOFS) integrated meander line polarizer and radome including: a substrate including layers having a dielectric constant (dk) of 2.9; a HOFS including metal layers disposed in a first subset of the layers; and meander lines, to provide a phase shift and match, disposed in a second subset of the layers, wherein the substrate includes a low-cost material and the metal layers include a feature trace and gap widths of about 10 mils or greater.Type: ApplicationFiled: October 11, 2022Publication date: September 21, 2023Applicant: Hughes Network Systems, LLCInventors: Michael BUCKLEY, Varada Rajan KOMANDURI
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Patent number: 11764866Abstract: Satellite communication systems and methods are disclosed herein. In an embodiment, a satellite communication system includes a user terminal and a gateway. The user terminal includes a terminal antenna and a terminal controller. The terminal antenna enables the user terminal to communicate via each of a first satellite and a second satellite. The gateway includes a gateway antenna and a gateway controller. The gateway antenna enables the gateway to communicate with the user terminal via each of the first satellite and the second satellite. At least one of the terminal controller and the gateway controller is configured to adjust a queue management policy during a handover operation from the first satellite to the second satellite.Type: GrantFiled: December 29, 2021Date of Patent: September 19, 2023Assignee: HUGHES NETWORK SYSTEMS, LLCInventors: Nassir Benammar, Channasandra Ravishankar
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Patent number: 11764863Abstract: A system to reduce a count of satellite gateways is disclosed. The system includes: a feeder link capacity of a satellite; a spectrum ranging from 26.5 GHz to 75 GHz; a gateway feeder link capacity that is an aggregate of capacities of channels defined in the spectrum; and RF gateways communicating with the satellite via the channels, wherein the count of the satellite gateways is less than or equal to a rounded-up integer of the feeder link capacity divided by the gateway feeder link capacity, and the satellite is a geosynchronous orbit satellite.Type: GrantFiled: December 27, 2021Date of Patent: September 19, 2023Assignee: Hughes Network SystemsInventors: Michael Scott, Jack Lundstedt, Robert Kepley
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Patent number: 11757505Abstract: A system and method for beamforming includes providing an antenna including feeds, a coverage area including service areas and data streams for each of the service areas; selecting a cluster of M feeds from the feeds; computing, with a GBBF processor (ground based beam former), M×N weights; generating M feed excitations by distributing the N data streams per the M×N weights; switching an array to transfer a respective one of the M feed excitations to a respective one of the M feeds; and beamforming, with the M feeds of the antenna, N beams. In the method, the N beams are each focused on a respective service area of each of the N data streams, the M×N weights improve the transmitting into the respective service area of each of the N data streams, and at least one of the N beams includes a portion of a plurality of the M feed excitations.Type: GrantFiled: October 22, 2021Date of Patent: September 12, 2023Assignee: Hughes Network Systems, LLCInventors: Stanley E. Kay, Uday R. Bhaskar, Neal David Becker
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Patent number: 11750278Abstract: A terminal computer includes a processor and a memory. The memory stores instructions executable by the processor to determine an initial power back-off value for establishing a communication link to a satellite as a function of a distance of a location of a satellite terminal antenna within a satellite beam footprint from a specified reference point within the satellite beam footprint, and to initiate communication with the satellite based on the determined initial power back-off value.Type: GrantFiled: December 23, 2020Date of Patent: September 5, 2023Assignee: Hughes Network Systems, LLCInventor: Murali Regunathan
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Publication number: 20230275649Abstract: MAC layer enhancements in protocol stacks of a user terminal of a satellite communication system such as a 5G based system. The MAC layer may include a scheduler that allows resource aggregation by allocating additional radio resources to users on one beam using carriers allocated to an adjacent beam. The MAC layer enhancements may also provide user terminals the ability to report their battery status to the scheduler which can then send signals to the user terminal that allow the terminal to shut down electronics to conserve power resources based on the battery status.Type: ApplicationFiled: August 12, 2022Publication date: August 31, 2023Applicant: HUGHES NETWORK SYSTEMS LLCInventors: Channasandra RAVISHANKAR, Gaguk ZAKARIA, John E. CORRIGAN, III
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Patent number: 11743192Abstract: A terrestrial terminal enables communications, over a network connection, between a local host of one or more connected local hosts and a remote host. The terrestrial terminal is configured to perform operations comprising: receiving, from the remote host, a network packet for the local host; obtaining, from the network packet, an included TCP segment; determining, from the TCP segment, a receive window size advertised by the remote host; computing, using one or more characteristics of the network connection, a target receive window size; comparing the target receive window size with the advertised receive window size; and in response to determining that the target receive window size is different from the advertised receive window size: modifying the TCP segment by replacing the advertised receive window size with the target receive window size, and forwarding the network packet with the modified TCP segment to the local host.Type: GrantFiled: May 17, 2021Date of Patent: August 29, 2023Assignee: Hughes Network Systems, LLCInventors: Ganeshan Ramachandran, Robert James Torres, George Choquette
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Publication number: 20230269780Abstract: Systems and methods for communication between user terminals and core network through satellite network and ground network are disclosed herein. The system facilitates connectivity through inter-satellite links in the satellite network. The system provides an air interface based on 5G protocols with satellite specific enhancements at lower layers, low latency, standards based physical layer design on both user and feeder links, beam-hopping design that minimizes end-to-end delay, software defined networking for route management to minimize payload complexity, efficient flow control between ground network and satellite to minimize buffering requirements in satellite payload, differentiated quality of service, advanced scheduler designs to cater to traffic types and full/half duplex terminals, end-to-end Layer 2 transport, direct user terminal to user terminal communications, adaptive modulation and coding, scalable gateway, and the like.Type: ApplicationFiled: February 21, 2023Publication date: August 24, 2023Applicant: Hughes Network Systems, LLCInventors: Channasandra S. RAVISHANKAR, James Jehong JONG, Nassir BENAMMAR, Deepak Manohar ARUR, Gaguk ZAKARIA, Subramanya Bayar KRISHNA, John CORRIGAN
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Patent number: 11737041Abstract: A method and system for determining inroute frame timing for a Very Small Aperture Terminal (VSAT) includes receiving an appointment to transmit, on an inroute, at a start of a slot X of a frame number M; establishing, at a VSAT, an arrival time of a super frame numbering packet (SFNP) including a satellite ephemeris vector and a frame number N; calculating, at the VSAT, a timing offset (TRO) to be applied to the arrival time to compensate for a time varying gateway-satellite-terminal propagation delay (THS+TSR); setting a transmit instant as an end of the TRO after the arrival time; adding to the transmit instant a duration of X slots and a duration of (M-N) frames; and transmitting a burst, on the inroute from the VSAT, at the transmit instant. In the method, the calculating is based on computing THS+TSR from the satellite ephemeris vector, a gateway transmits the SFNP and receives the burst in the slot X within the frame number M of the inroute, and N is greater than or equal to M.Type: GrantFiled: September 9, 2022Date of Patent: August 22, 2023Assignee: Hughes Network Systems, LLCInventors: Murali Regunathan, Zheng Wu, John Border
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Patent number: 11722212Abstract: A system includes a satellite communications terminal including a computer programmed to provide communications for user devices with a destination network. The computer detects a physical state or change in a physical state specified as a trigger to transfer the communications for the user devices with the destination network from a satellite communications channel to a cellular communications channel. Upon detecting the trigger event, the computer establishes a communications link with a cellular device and provides communications for the user devices with the destination network via the cellular device and the cellular communications channel.Type: GrantFiled: August 30, 2021Date of Patent: August 8, 2023Assignee: Hughes Network Systems, LLCInventors: Emanuel Harrington, Hasme Rafsan Jani
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Patent number: 11722213Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for machine learning models for adjusting communication parameters. In some implementations, data for each device in a set of multiple communication devices is obtained. A machine learning model is trained based on the obtained data. The model can be trained to receive an indication of a geographic location and predict a communication setting capable of providing at least a minimum level of efficiency. After training the machine learning model, an indication of a predicted communication setting for a particular communication device is generated. A determination is then made whether to change a current communication setting for the particular communication device based on the predicted communication setting.Type: GrantFiled: September 3, 2021Date of Patent: August 8, 2023Assignee: Hughes Network Systems, LLCInventors: Amit Arora, Archana Gharpuray, John Kenyon