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公开(公告)号:US11070991B2
公开(公告)日:2021-07-20
申请号:US16889345
申请日:2020-06-01
Applicant: CABLE TELEVISION LABORATORIES, INC.
Inventor: Jennifer Andreoli-Fang , Alireza Babaei
Abstract: Systems and methods presented herein provide for improving communications when encountering aggressive communication systems. In one embodiment, a communication system comprises a wireless access point operable to link a first user equipment (UE) to a WiFi network via a contention based mode that directs the WAP to share radio frequency spectrum with other WAPs. The communication system also comprises a communication processor operable to query at least the first UE to determine aggressive radio frequency (RF) band activity by another communication system in range of the WAP, to determine that the aggressive RF band activity by the other communication system is pushing communication with the first UE via the WAP below a threshold level, and based on the determination, direct the WAP to switch to a contention free mode to communicate with the first UE in contention free mode.
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公开(公告)号:US10986034B2
公开(公告)日:2021-04-20
申请号:US15934286
申请日:2018-03-23
Applicant: CABLE TELEVISION LABORATORIES, INC
Inventor: Jennifer Andreoli-Fang
IPC: H04L12/927 , H04L12/851 , H04L12/28 , H04L29/06 , H04L12/813 , H04L29/08 , H04M15/00 , H04L12/14 , H04W28/02 , H04W4/24
Abstract: A converged small cell communication system includes a mobile network core, a data over cable service interface specification (DOCSIS) core, and a common policy platform for managing a service flow of a user equipment within a communication vicinity of the small cell communication system. The mobile network core includes a policy engine and a packet data network gateway (PGW). The DOCSIS core includes a packetcable multimedia (PCMM) unit having a policy server and an application manager, and a cable modem termination system (CMTS).
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公开(公告)号:US20200287747A9
公开(公告)日:2020-09-10
申请号:US16698765
申请日:2019-11-27
Applicant: CABLE TELEVISION LABORATORIES, INC.
Inventor: Jennifer Andreoli-Fang , Bernard McKibben
Abstract: A method for using a common control plane to control a plurality of access networks includes (1) supporting a first communication link of a first access network using a control plane of the first access network, and (2) supporting a second communication link of a second access network using the control plane of the first access network. A communication system includes the first access network and the second access network.
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公开(公告)号:US20200229075A1
公开(公告)日:2020-07-16
申请号:US16835006
申请日:2020-03-30
Applicant: CABLE TELEVISION LABORATORIES, INC
Inventor: Jennifer Andreoli-Fang , Bernard McKibben , Vikas Sarawat
Abstract: Wireless access network selection is contemplated. The selection process may include arbitrating use of a plurality of wireless networks according to their performance capabilities. The performance capabilities or parameters may be identified from information broadcasted from the wireless networks. Mobile devices capable of wirelessly connecting to the networks may identify the performance capabilities prior to connecting to the wireless networks, thereby enabling the mobile devices to more efficiently identify suitable networks.
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公开(公告)号:US10602375B2
公开(公告)日:2020-03-24
申请号:US15943920
申请日:2018-04-03
Applicant: Cable Television Laboratories, Inc.
Inventor: Luis Alberto Campos , Jennifer Andreoli-Fang , Thomas Williams
Abstract: Beamforming for adapting wireless signaling beams in an adaptive and agile manner is contemplated. The beamforming may be characterized by adaptively constructing beam form parameters to provide wireless signaling in a manner that maximizes efficiency and bandwidth according to device positioning relative to a responding base station.
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公开(公告)号:US10461818B2
公开(公告)日:2019-10-29
申请号:US16159844
申请日:2018-10-15
Applicant: Cable Television Laboratories, Inc.
Inventor: Alireza Babaei , Jennifer Andreoli-Fang
IPC: H04B7/0426 , H04B7/08
Abstract: The present system and method provides a spatial multiplexing scenario that is performed purely in the analog domain when transmit and receive arrays are in Line of Sight (LoS) and hence significantly reduce the DSP requirements of massive MIMO systems.
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公开(公告)号:US20190229974A1
公开(公告)日:2019-07-25
申请号:US16255764
申请日:2019-01-23
Applicant: CABLE TELEVISION LABORATORIES, INC.
Inventor: Luis Alberto Campos , Jennifer Andreoli-Fang , Judson D. Cary , David Daniel Smith
Abstract: A method for transmitting data through a multi-media communication network includes converting transmission entities into data symbols at a first communication device, transmitting the data symbols from the first communication device to a second communication device through at least two different types of communication media using only lower PHY layers of the at least two different types of communication media, and converting the data symbols into transmission entities at the second communication device. A network implementing a universal data link includes a first communication device configured to convert transmission entities into data symbols, a second communication device configured to convert the data symbols into transmission entities, at least a first communication medium and a second communication medium communicatively coupled between the first communication device and the second communication device, and a first physical-layer translator configured to translate data symbols without converting the data symbols into transmission entities.
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公开(公告)号:US10256895B2
公开(公告)日:2019-04-09
申请号:US15148260
申请日:2016-05-06
Applicant: Cable Television Laboratories, Inc.
Inventor: Dorin Viorel , Jennifer Andreoli-Fang
Abstract: A system and method for optimizing the end-to-end latency transfer rates over an air interface employing a Multi-hop Relays (MHR). The present system and method provides fast signaling process when no Downlink/Uplink Bandwidth allocation changes are employed, thereby bypassing PHY/MAC/IP Stack processing. The solution is intended for the new generation of 5G millimeter band multi-hop relays.
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公开(公告)号:US10225863B2
公开(公告)日:2019-03-05
申请号:US15439814
申请日:2017-02-22
Applicant: CABLE TELEVISION LABORATORIES, INC.
Inventor: Jennifer Andreoli-Fang , Dorin Gheorghe Viorel , Belal Hamzeh , Josh Redmore , Carey Sonsino
Abstract: A method for detecting aggressive signal transmission signatures in a wireless communication network is provided. The network includes at least one cooperative device, an access point, and at least one non-cooperative device. The method includes steps of generating a matrix of at least 8 bits configured to register each instance of at least one of a clear-to-send frame and a request-to-send frame transmitted between the at least one cooperative device and the access point during a specified duration, calculating a cumulative distribution function based on the registered instances within the generated matrix for a probability of the presence of an aggressive transmission signal by the at least one non-cooperative device within a measurable vicinity of one or more of the cooperative device and the access point, and determining the presence of the aggressive transmission signal based on the calculated cumulative distribution function being greater than a predetermined threshold.
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公开(公告)号:US10009777B2
公开(公告)日:2018-06-26
申请号:US14940850
申请日:2015-11-13
Applicant: Cable Television Laboratories, Inc.
Inventor: Alireza Babaei , Jennifer Andreoli-Fang
Abstract: Systems and methods presented herein provide for improving communications when encountering aggressive communication systems. In one embodiment, a communication system includes a WAP operable to link a UE to a communication network via a communication protocol and a communications processor operable with the WAP to detect another communication system operating within a range of the WAP, and to determine that the other communication system is operating via another communication protocol that differs from the communication protocol of the communication network based on UEs in range of the WAP. The UEs are operable to communicate via both communication protocols. The communications processor queries the UEs in the range of the WAP to determine which of the UEs are communicating via the other communication protocol, and estimates a rate of successful communication with the UE via the WAP based on a number of UEs communicating via the other communication protocol.
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