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公开(公告)号:US20240195490A1
公开(公告)日:2024-06-13
申请号:US18078838
申请日:2022-12-09
发明人: Ali Sajassi , Arman Rezaee , Pradeep Kumar Kathail
CPC分类号: H04B7/18523 , H04W64/003 , H04W40/20
摘要: Described herein are techniques for implementing a low earth orbit (LEO) satellite network and routing communications (e.g., packets) over that network. In embodiments, the techniques may comprise receiving, at a first ground station computing device, a request to determine destination information for a communication, determining, at the first ground station computing device based on information about the communication, a target computing device to which the communication is to be routed, determining, at the first ground station computing based on the target computing device, a location of a destination ground station, determining, at the first ground station computing by mapping orbital data to the location of the destination ground station, a destination satellite, generating the destination information to include at least an address for the destination satellite, and providing the destination information in response to the request.
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公开(公告)号:US11855747B2
公开(公告)日:2023-12-26
申请号:US17122097
申请日:2020-12-15
IPC分类号: H04B7/185
CPC分类号: H04B7/18558 , H04B7/18506 , H04B7/18523 , H04B7/18582
摘要: Systems and methods for transmitting data using a satellite communication network are disclosed herein. In an embodiment, a satellite communication network includes a first terminal, a second terminal, and a base station. The first terminal is configured to collect first target data. The second terminal is configured to receive a first data packet including the first target data from the first terminal via a local connection. The base station is in communication with the first terminal and the second terminal via at least one satellite. The base station is configured to: (i) receive copies of the first data packet from each of the first and second terminals via the at least one satellite; (ii) process a first copy of the first data packet; and (iii) delete a second copy of the first data packet.
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公开(公告)号:US11848743B2
公开(公告)日:2023-12-19
申请号:US17858594
申请日:2022-07-06
申请人: DISH Wireless L.L.C
CPC分类号: H04B7/18523 , H04B7/155 , H04B7/2615
摘要: Various arrangements for spectrum sharing among a terrestrial network and a non-terrestrial network are presented herein. A first bandwidth part having a first frequency range for may be assigned use for communication between one or more UE of a plurality of UE and a terrestrial cellular network when a high signal strength is present. A second bandwidth part having a second frequency range may be assigned for use for communication between one or more UE of the plurality of UE and the terrestrial cellular network when a low signal strength is present. A third bandwidth part having a third frequency range can be assigned for use for communication between one or more UE of the plurality of UE and a non-terrestrial network. The third bandwidth part can overlap with the first bandwidth part but not the second bandwidth part.
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4.
公开(公告)号:US20230336811A1
公开(公告)日:2023-10-19
申请号:US18335276
申请日:2023-06-15
申请人: DISH Network L.L.C.
发明人: Kan Man Wong
IPC分类号: H04N21/433 , H04N21/238 , G10L15/22 , H04N21/45 , H04N21/262 , H04N21/61 , H04N21/81 , H04N21/4363 , H04N21/462 , H04B7/185 , H04N21/2665 , G06F9/451 , G06F9/44 , H04N21/475 , H04N21/478 , H04L61/5014 , H04L41/0893 , H04L65/611 , G06F8/41 , G06F8/70
CPC分类号: H04N21/433 , H04N21/238 , G10L15/22 , H04N21/4518 , H04N21/4516 , H04N21/26291 , H04N21/6118 , H04N21/6125 , H04N21/6143 , H04N21/818 , H04N21/43637 , H04N21/4622 , H04B7/18523 , H04N21/2665 , G06F9/451 , G06F9/44 , H04N21/475 , H04N21/478 , H04L61/5014 , H04N21/6106 , H04L41/0893 , H04L65/611 , G06F8/45 , G06F8/451 , G06F8/453 , G06F8/70 , G10L2015/223 , H04L2101/668
摘要: Various arrangements for facilitating smart television content receivers are provided. A primary television receiver (PTR) having a first operating system may be configured to receive digital content from a remote content provider and distribute the content to one or more devices in response to a request for the content. A secondary television receiver (STR) configured to be in communication with a PTR and having a second operating system may be configured to receive the digital content from the PTR and provide the content to a display for presentation. The STR may include a first software stack including a first inter-process communication (IPC) mechanism, and a second software stack including the first IPC mechanism and a second IPC mechanism. The first IPC may support communication within the first stack as well as between the first stack and the second stack. The second IPC may support communication within the second stack.
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公开(公告)号:US11716231B1
公开(公告)日:2023-08-01
申请号:US17822057
申请日:2022-08-24
发明人: Weimin Duan , Jun Ma , Huilin Xu , Qiang Wu , Lianghai Ji , Mehmet Izzet Gurelli , Karthik Anantha Swamy , Hyojin Lee
CPC分类号: H04L27/26025 , H04L5/005 , H04L5/0007 , H04W8/22 , H04B7/18523
摘要: In some implementations, a non-terrestrial network (NTN) platform may transmit radio frequency (RF) signals toward earth, the RF signals comprising an orthogonal frequency-division multiplexing (OFDM) waveform with a plurality of symbols including a JCS symbol and one or more non-JCS symbols, wherein: the RF signals are incident on an area of the earth defining a footprint, and a duration of a cyclic prefix (CP) of the JCS symbol is a function of a width of the footprint. The NTN platform may receive, at the NTN platform, one or more reflections of the JCS symbol.
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6.
公开(公告)号:US20180310347A1
公开(公告)日:2018-10-25
申请号:US16017594
申请日:2018-06-25
发明人: Deepak DAS , Sepehr MEHRABANZAD
CPC分类号: H04W76/10 , H04B7/18523 , H04L5/0048 , H04L12/14 , H04L12/66 , H04L41/026 , H04L41/12 , H04L41/5051 , H04L41/5087 , H04L41/5096 , H04L49/70 , H04L61/1505 , H04L67/02 , H04L67/10 , H04L67/142 , H04L67/22 , H04M15/55 , H04M15/66 , H04W4/24 , H04W4/60 , H04W12/06 , H04W12/08 , H04W48/06 , H04W48/16 , H04W56/0015 , H04W72/0453 , H04W72/0486 , H04W72/085 , H04W76/27 , H04W84/20 , H04W88/08
摘要: Systems and methods for providing mobile services are disclosed. In one implementation, an access point (AP) is provided, which may include a set of one or more base-station functions for use by a user equipment (UE) connected to the AP over a wireless communication interface. The one or more base-station functions may be configured to receive information from the UE. The AP may further include a set of one or more core-network functions configured to receive the information from the set of one or more base-station functions and a distributed portion of a service. The distributed portion of the service may be configured to receive the information from the one or more core-network functions and communicate the information to a corresponding cloud portion of the service running on a cloud platform. The service may be provided by a combination of the distributed portion and the cloud portion of the service. The distributed portion of the service may be further configured to receive a response from the cloud portion of the service based on processing performed by the cloud portion on the cloud platform.
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公开(公告)号:US10057366B2
公开(公告)日:2018-08-21
申请号:US14986608
申请日:2015-12-31
发明人: Chi-Jiun Su , Udaya Bhaskar
IPC分类号: G06F5/16 , H04L29/08 , H04L29/06 , H04B7/185 , H04N21/433
CPC分类号: H04L67/2842 , H04B7/185 , H04B7/18523 , H04B7/18578 , H04L65/4069 , H04L65/4084 , H04L65/601 , H04L67/2852 , H04N21/23106 , H04N21/23439 , H04N21/433 , H04N21/44004 , H04N21/8456
摘要: An approach for cached content identification for adaptive data streaming. A first request is received, requesting a current segment from a sequence of segments from a data file of a streaming data session. A NewVideoFlag is determined as indicating that the sequence of segments associated with the first request is not currently being cached. The first request is forwarded to a content server, and a first response message is received. A SegmentID of the received content segment is determined as not matching that of cached content segments. The NewVideoFlag is set to indicate that the segments from the streaming data session file are currently being cached. A global cVideoFileID is generated identifying the streaming session data file being cached. The content segment is cached, and cache bookkeeping is updated to associate the segment with the SegmentID and the cVideoFileID. The first response message is provided to the client device.
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公开(公告)号:US20180227045A9
公开(公告)日:2018-08-09
申请号:US15623486
申请日:2017-06-15
申请人: MaxLinear, Inc.
发明人: Curtis Ling , Timothy Gallagher , Glenn Chang
IPC分类号: H04B7/185 , H04W88/16 , G01S19/42 , H04W88/08 , H04W84/10 , H04W84/04 , H04W76/04 , H04W4/02 , H04N21/643 , H04N21/61 , H04N21/4627 , H04N21/45 , H04N21/441 , H04N21/4408 , H04N21/4405 , H04N21/438 , H04N21/4363 , H04N21/434 , H04N21/41 , H04L29/06 , H04L29/12 , H04L12/741 , H04J4/00 , H04H40/90 , H04H20/08 , H04H60/23 , H04H60/21 , H04W84/12
CPC分类号: H04B7/18526 , G01S19/42 , H04B7/185 , H04B7/18515 , H04B7/18517 , H04B7/18523 , H04H20/08 , H04H40/90 , H04H60/21 , H04H60/23 , H04J4/00 , H04L45/74 , H04L61/2007 , H04L65/4076 , H04N21/4126 , H04N21/4343 , H04N21/43637 , H04N21/4382 , H04N21/4405 , H04N21/4408 , H04N21/441 , H04N21/4524 , H04N21/4627 , H04N21/61 , H04N21/6143 , H04N21/6193 , H04N21/64322 , H04W4/023 , H04W76/20 , H04W84/042 , H04W84/10 , H04W84/12 , H04W88/08 , H04W88/16
摘要: A satellite reception assembly may comprise a first module operable to demodulate a first one or more channels of a signal output by a direct broadcast satellite (DBS) low noise block downconverter (LNB). The first module may output a signal to a second module which may demodulate a second one or more channels of the signal output by the DBS LNB. The second module may be installed after the satellite reception assembly has been deployed upon a number of clients served by the satellite reception assembly reaching a threshold.
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9.
公开(公告)号:US09979464B1
公开(公告)日:2018-05-22
申请号:US13484756
申请日:2012-05-31
申请人: Ernest C. Chen
发明人: Ernest C. Chen
IPC分类号: H04H20/74 , H04B7/185 , H04B7/19 , H04W4/00 , G01S13/00 , G01S13/08 , H04B7/216 , H04H20/67 , H04J3/16 , H04J3/22 , H04B1/00 , H04B14/04 , H04K1/10 , H04L27/28 , H04N7/20 , H04N7/173 , H04B1/69 , H04J13/00 , H04L5/00
CPC分类号: H04B7/1851 , H04B1/69 , H04B7/18513 , H04B7/18515 , H04B7/18517 , H04B7/18523 , H04B7/18543 , H04J13/0048 , H04L5/0016 , H04L5/006 , H04L27/28 , H04N7/22 , H04N21/23608 , H04N21/23655 , H04N21/2383 , H04N21/4344 , H04N21/4347 , H04N21/4382 , H04N21/631 , H04W4/06
摘要: An apparatus and method for combining transponder bandwidths comprises a wide-band virtual transponder for transmitting a single data stream. The wide-band virtual transponder is comprised of a plurality of narrow-band physical transponders. A plurality of elementary streams are statistically multiplexed to create the single data stream, wherein the single data stream is forward error correction encoded and demultiplexed into a plurality of transponder streams for transmission by the plurality of physical transponders. The physical transponders each use a different portion of a signal spectrum, wherein the different portion may be guard bands or a combination of legacy bands and guard bands. Upon receipt, the transponder streams are multiplexed to recover the single data stream, wherein the recovered single data stream is forward error correction decoded and statistically demultiplexed to recover the plurality of elementary streams.
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10.
公开(公告)号:US09973261B1
公开(公告)日:2018-05-15
申请号:US15392629
申请日:2016-12-28
发明人: Chris Hardy , Paul Bellotti
IPC分类号: H04Q7/20 , H04B7/185 , H04W4/06 , B64C39/02 , G05D1/10 , G01S5/04 , H04N7/18 , G06K9/00 , H04W84/00
CPC分类号: H04B7/18504 , B64C39/024 , B64C2201/021 , B64C2201/024 , B64C2201/122 , G01S5/04 , G05D1/104 , G06K9/0063 , H04B7/18523 , H04N7/181 , H04N7/188 , H04W4/06 , H04W84/005
摘要: Drone-based wireless communications systems are provided, as are methods carried-out by such wireless communications systems. In one embodiment, the wireless communications system includes a Satellite Signal Transformation (SST) unit and a plurality of aerial network drones, which can be deployed over a designated geographical area to form a multi-drone network thereover. During operation, the SST unit transmits a network source signal, which contains content extracted from a satellite signal. The multi-drone network receives the network source signal, disseminates drone relay signals containing the content through the multi-drone network, and broadcastings user device signals containing the content over the designated geographical area. In embodiments, the multi-drone network may broadcast multiple different types of user device signals for reception by various different types of user devices located within the designated geographical area, such as an area containing communication infrastructure disabled by a natural disaster, a hostile attack, or other catastrophic event.
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