Patents Assigned to Hughes Networks Systems
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Publication number: 20210367663Abstract: A system and method for reducing usage of satellite channelizers including dividing a frequency spectrum into sub-bands; providing a satellite channelizer for each of the sub-bands, where each of the sub-bands may include channels; multiplexing service channels into the channels of one of the sub-bands, where the service channels convey data for a plurality of MSSs. A system and method for obtaining high throughput on a satellite network. A system and method for providing a Fair Access Policy (FAP) in a 4G system.Type: ApplicationFiled: May 20, 2021Publication date: November 25, 2021Applicant: Hughes Network Systems, LLCInventors: Channasandra RAVISHANKAR, James Jehong JONG, Gaguk ZAKARIA, Nassir BENAMMAR
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Publication number: 20210368384Abstract: 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/3 satisfies a total power constraint of an antenna subsystem.Type: ApplicationFiled: May 21, 2020Publication date: November 25, 2021Applicant: Hughes Network Systems, LLCInventors: Udaya BHASKAR, Stanley KAY, Neal David BECKER
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Publication number: 20210368478Abstract: A system and method for communicating with an Internet Of Things (IoT) device via a satellite link. The method includes assigning a transmission mode to a physical channel, where the physical channel supports multiple timeslot durations and the transmission mode is selected from a single user (SU) or a multi-user (MU); selecting a timeslot duration from the multiple durations for a payload; obtaining, when the transmission mode is SU, a timeslot grant for use of the physical channel for the timeslot duration; and transmitting a burst including the payload, where the burst is transmitted synchronized with the timeslot grant when the transmission mode is SU and the burst is transmitted without synchronization when the transmission mode is MU.Type: ApplicationFiled: May 20, 2021Publication date: November 25, 2021Applicant: Hughes Network Systems, LLCInventors: James Jehong JONG, Channasandra RAVISHANKAR, William WHITMARSH
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Publication number: 20210367661Abstract: A system and method for operating a hybrid 4G satellite network. The method includes providing a NGSG including a satellite AS/NAS stack, a terrestrial 4G stack and a relay to connect the satellite AS/NAS stack and the terrestrial 4G stack; transporting a 4G traffic between a 4G UE and the NGSG using a satellite air interface; utilizing a terrestrial network between the NGSG and a 4G CN to transport the 4G traffic; and mapping, with the relay, the 4G traffic between the satellite AS/NAS stack and the terrestrial 4G stack and vice versa, where the satellite air interface is better suited for satellite communications than the terrestrial network. A system and method for multiplexing a first-generation UE and a second-generation UE on a satellite channel.Type: ApplicationFiled: May 20, 2021Publication date: November 25, 2021Applicant: Hughes Network Systems, LLCInventors: Channasandra RAVISHANKAR, James Jehong JONG, Gaguk ZAKARIA, Nassir BENAMMAR
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Patent number: 11182452Abstract: A method wherein resource data for a web resource is generated can include age, confidence level, cacheability level, cache expiration, and/or priority level. Resource readiness for the web page is prepared based on the resource data. This can include preconnecting to a domain having the web resource when the resource data indicates a first level of resource readiness; preloading the web resource from the domain when the browser is open when the resource data indicates a second level of resource readiness, where the second level of resource readiness is greater than the first level of resource readiness; or prefetching the web resource from the domain prior to opening of the browser when the resource data indicates a third level of resource readiness, where the third level of resource readiness is greater than the second level of resource readiness.Type: GrantFiled: September 12, 2019Date of Patent: November 23, 2021Assignee: Hughes Network Systems, LLCInventors: Chi-Jiun Su, Kaustubh Jain
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Patent number: 11184100Abstract: A user terminal (UT) to transmit small amounts of data, the UT including: a packet including the data, where the packet is less than 128 bytes; a frequency synchronizer to synchronize a transmission frequency of an ASCMA return link connecting the UT with a satellite gateway; and an ASCMA transmitter to transmit, without acquiring timing synchronization with the satellite gateway from the UT, the packet modulated over the synchronized transmission frequency as an ASCMA waveform including a preamble to indicate a start of a transmission. Other embodiments of this aspect include corresponding computer systems, apparatus, and computer programs recorded on one or more computer storage devices, each configured to perform the actions of the methods.Type: GrantFiled: August 7, 2019Date of Patent: November 23, 2021Assignee: Hughes Network SystemsInventors: Liping Chen, Lin-Nan Lee
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Patent number: 11184071Abstract: 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; scheduling N data streams of the data streams, 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: December 4, 2020Date of Patent: November 23, 2021Assignee: Hughes Network Systems, LLCInventors: Stanley E. Kay, Uday R. Bhaskar, Neal David Becker
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Patent number: 11177875Abstract: Various arrangements are presented for optimizing data transmission between a satellite and a user equipment. A satellite gateway system may receive a message from the user equipment indicative of a current location of the user equipment. Data may be retrieved from the Internet to be transmitted to the user equipment via the satellite. The satellite gateway system may transmit a downlink message to the satellite that comprises the retrieved data and beam steering data. The beam steering data may instruct the satellite to target a downlink spot beam on the current location of the user equipment based on the message received from the user equipment. The retrieved data may be transmitted to the user equipment via the targeted downlink spot beam.Type: GrantFiled: August 6, 2020Date of Patent: November 16, 2021Assignee: Hughes Network Systems, LLCInventor: T. Paul Gaske
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Publication number: 20210344411Abstract: A system for monitoring operational status and detecting faults in a satellite system is disclosed. The system may include a processor and a memory storing instructions, which when executed by the processor, cause the processor to select, from a plurality of terminals, a subset of terminals to perform system operation tests. The processor may select the subset of terminals using at least one of a semi-static pre-qualification technique and a dynamic pre-qualification technique. The processor may also perform system operation tests using the selected subset of terminals. The processor may further report results from the system operation test using the selected subset of terminals. In some examples, the processor may also determine potential system operation issues based on the results of the system operation tests, generate an alarm or notification based on the determination of potential system operation issues, and/or abort testing or delay testing to a future testing cycle.Type: ApplicationFiled: May 4, 2020Publication date: November 4, 2021Applicant: Hughes Network Systems, LLCInventor: George Joseph CHOQUETTE
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Patent number: 11165491Abstract: Methods, systems, and apparatus, including computer-readable media, for location management for satellite systems. In some implementations, a controller of a satellite network system receives location data from a user terminal and registers the user terminal in a mobility area with a core network. The controller updates a mapping between satellite beams and mobility areas as the satellite beams move along the ground with respect to the mobility areas, then uses the updated mapping to communicate with the user terminal using an appropriate satellite beam. In some implementations, a controller of a satellite network system determines a mapping of satellite beams to mobility areas, and broadcasts, for each of multiple satellite beams, a message indicating (i) a set of mobility areas that are at least partially covered by the satellite beam and (ii) an indication of boundaries of the mobility areas in the set of mobility areas.Type: GrantFiled: December 31, 2018Date of Patent: November 2, 2021Assignee: Hughes Network Systems, LLCInventors: Deepak Arur, Channasandra Ravishankar
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Patent number: 11165622Abstract: Systems and methods are described, and one method includes acquiring a frequency offset for a demodulator receiving one symbol rate in combination with acquiring another frequency offset for another demodulator, based on sweeping the other frequency offset until detecting a qualifying symbol pattern or acquiring the frequency offset for the demodulator receiving one symbol rate, whichever occurs first. Associated with acquiring the other frequency offset based on acquiring the frequency offset for the demodulator receiving one symbol rate, setting the other frequency offset includes adjusting the frequency offset for the demodulator receiving one symbol rate.Type: GrantFiled: October 18, 2019Date of Patent: November 2, 2021Assignee: Hughes Network Systems, LLC.Inventors: Nimesh Prakash Ambeskar, Daniel Christopher Hantz, Joyal Jose
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Patent number: 11159263Abstract: A system includes a satellite communications gateway including a first receiver. The first receiver is programmed to receive a first signal including a time-division multiplexed (TDM) return and a time-division multiple access (TDMA) return overlapped in an allocated frequency range. The receiver is further programmed to recover the time-division multiplexed return from the first signal; and output the time-division multiplexed return.Type: GrantFiled: December 23, 2019Date of Patent: October 26, 2021Assignee: Hughes Network Systems, LLCInventor: Douglas R. Ricker
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Patent number: 11153786Abstract: Disclosed methods include a resource manager in a multiple node network receiving a demand for additional bandwidth, from a terminal, and the resource manager having updated information on the state of the mobile node network and, using that the state information, performing test allocation of the requested bandwidth to the requesting terminal. Disclosed methods include determining whether previous commitments of service can be met with the test allocation in place. Associated with a positive result, an allocation is sent to the terminal.Type: GrantFiled: December 29, 2019Date of Patent: October 19, 2021Assignee: Hughes Network Systems, LLC.Inventors: Robert James Torres, Stanley Edward Kay, George Choquette
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Patent number: 11146327Abstract: 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 terminal in a set of multiple satellite terminals 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 satellite beam capable of providing at least a minimum level of efficiency for communication at the geographic location. After training the machine learning model, an indication of a predicted satellite beam for a particular location is generated for a particular geographic location. A determination is then made whether to change the current satellite beam for a terminal at the particular geographic location based on the predicted satellite beam.Type: GrantFiled: December 29, 2017Date of Patent: October 12, 2021Assignee: Hughes Network Systems, LLCInventors: Amit Arora, Archana Gharpuray, John Kenyon
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Patent number: 11146494Abstract: A system for scheduling prioritized traffic in a scrambled and coded multiple access (SCMA) system multiple terminals and a gateway. Each terminal is configured to receive packets from user devices and place the packets on various input queues. The packets are en-queued onto a plurality of output queues based on priority or service class. The terminal is further configured to detect one or more available SCMA slots within a frame of a communication system, and de-queue packets from the highest priority output queue onto the frame via one or more SCMA bursts. The terminal includes transceiver for transmitting/receiving frames of the communication system to/from the gateway. The terminals autonomously transmit SCMA bursts relative to each other.Type: GrantFiled: August 5, 2019Date of Patent: October 12, 2021Assignee: Hughes Network Systems, LLCInventors: Jun Xu, Rob Torres, John Border, Zengquan Fan
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Patent number: 11134016Abstract: Methods and systems for monitoring a communication network using machine-learning techniques are disclosed. In some implementations, a forecasted amount of traffic for a communication network is determined using one or more network traffic forecasting models being configured to generate the forecasted amount of traffic based on data indicating one or more previous amounts of traffic for the communication network. A measure of network health is generated based on a measured amount of traffic and the forecasted amount of traffic. Data indicating one or more characteristics of the communication network is processed using one or more machine learning models to generate a predicted measure of network health for a future time period. An indication of the predicted measure of network health for the future time period is provided.Type: GrantFiled: October 26, 2018Date of Patent: September 28, 2021Assignee: Hughes Network Systems, LLCInventors: Amit Arora, Archana Gharpuray, John Kenyon
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Patent number: 11122690Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for producing meander-line polarizers. In some implementations, a meander-line polarizer includes a dielectric substrate made of a polyester polymer material and meander-line arrays formed on a surface of the dielectric substrate. Each meander-line array includes a sequence of alternating perpendicular conductive traces that are formed the surface of the dielectric substrate by applying conductive ink to the surface of the dielectric substrate using a template that defines a location and dimensions of each conductive trace of each meander-line array.Type: GrantFiled: December 31, 2018Date of Patent: September 14, 2021Assignee: Hughes Network Systems, LLCInventors: Bingqian Lu, Peter Hou, Taiwei Yue, Brian Clough, Harry Johnson, John Corrigan
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Patent number: 11115338Abstract: A method of and system for converting domain names to a vector space embedding may include receiving data relating to internet traffic over a network, organizing the data into one or more documents that make up a training dataset, each of the one or more documents including one or more Domain Name Server (DNS) queries, providing the training dataset to a deep neural network to generate at least one vector space embedding for one or more domain names, and providing the vector space embedding as an output.Type: GrantFiled: December 10, 2019Date of Patent: September 7, 2021Assignee: Hughes Network Systems, LLCInventor: Amit Arora
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Patent number: 11108646Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for training and using machine learning models to classify network traffic as IoT traffic or non-IoT traffic and managing the traffic based on the classification. In some implementations, machine learning parameters of a local machine learning model trained by the edge device is received each of at least a subset of a set of edge devices. The machine learning parameters received from an edge device are parameters of the local machine learning model trained by the edge device based on local network traffic processed by the edge device and to classify the network traffic as Internet of Things (IoT) traffic or non-IoT traffic. A global machine learning model is generated, using the machine learning parameters, to classify network traffic processed by edge devices as IoT traffic or non-IoT traffic.Type: GrantFiled: December 31, 2019Date of Patent: August 31, 2021Assignee: Hughes Network Systems, LLCInventors: Amit Arora, Satyajit Roy, John Kenyon
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Patent number: 11108669Abstract: Various arrangements for monitoring and enforcing multi-tier throughput assignments in a network, such as satellite-based communication network, are presented. Throughput usage may be monitored on a beam-level, satellite-level, gateway-level, and system level. Throughput usage for individual satellite terminals may be aggregated and used to determine the throughput usage on an entity-by-entity basis. An entity can have one or more sub-entities to which throughput is allocated. Excessive throughput usage for higher-tier entities can result in throughput being restricted for satellite terminals associated with lower-tier entities.Type: GrantFiled: December 31, 2019Date of Patent: August 31, 2021Assignee: Hughes Network Systems, LLCInventors: Robert J. Torres, Hanny Kadrichu, John L. Border