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521.
公开(公告)号:US11240690B2
公开(公告)日:2022-02-01
申请号:US16884039
申请日:2020-05-26
Applicant: Parallel Wireless, Inc.
Inventor: Biswajeet Kumar
IPC: H04W24/06 , H04W28/02 , H04W72/04 , H04L12/825
Abstract: Systems, methods and computer software are disclosed for predicting streaming media Quality of Experience (QoE) for network slice selection in 5G networks. In one embodiment, a method includes developing a mathematical model of QoE parameters at base station transmitters; providing feedback from the models to a Quality of Service (QoS) manager; and selecting, by the QoS manager based on the feedback from the models, a 5G network slice that meets QoS requirements for allocation to a user.
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公开(公告)号:US11206584B2
公开(公告)日:2021-12-21
申请号:US16774186
申请日:2020-01-28
Applicant: Parallel Wireless, Inc.
Inventor: Prashanth Rao , Pratik Mehta , Kartik Shashikant Raval , Kaitki Agarwal , Rajesh Kumar Mishra , Sridhar Donepudi , Anupam Goyal , Yang Cao
IPC: H04W36/00 , H04W24/02 , H04W36/14 , H04W48/16 , H04W92/20 , H04W88/16 , H04W84/18 , H04W92/04 , H04W88/12
Abstract: A gateway for X2 interface communication is provided, including: an X2 internal interface for communicating with, and coupled to, a plurality of radio access networks (RANs); and an X2 external interface for communicating with, and coupled to, a destination outside of the plurality of RANs, the X2 external interface further including a single X2 endpoint for the plurality of radio access networks, such that the X2 external interface provides a single interface for an external macro cell or core network to interact with the plurality of radio access networks. The gateway may further include a handover module for maintaining X2 signaling associations and transactions for incoming and outbound handovers, including X2 to S1 and S1 to X2 translation.
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公开(公告)号:US11191127B2
公开(公告)日:2021-11-30
申请号:US16788115
申请日:2020-02-11
Applicant: Parallel Wireless, Inc.
Inventor: Sridhar Donepudi , Sumit Garg , Kaitki Agarwal , Rajesh Kumar Mishra , Steven Paul Papa
Abstract: We disclose systems and methods of dynamically virtualizing a wireless communication network. The communication network is comprised of heterogeneous multi-RAT mesh nodes coupled to a computing cloud component. The computing cloud component virtualizes the true extent of the resources it manages and presents an interface to the core network that appears to be a single base station.
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公开(公告)号:US11191121B2
公开(公告)日:2021-11-30
申请号:US16520242
申请日:2019-07-23
Applicant: Parallel Wireless, Inc.
Inventor: David Cullerot , Yang Cao , Jitender Arora
Abstract: Systems, methods and computer software are disclosed for providing Multipath Transmission Control Protocol (MPTCP) with mesh access. A multi Radio Access Technology (RAT) base station gateway having a MPTCP proxy, proxies an initial MPTCP connection from a User Equipment (UE). The multi-RAT base station gateway determines if the UE is capable of MPTCP to provide MPTCP. When the UE is capable of MPTCP, then the multi-Rat base station provides a Wi-Fi connection and an LTE connection. When the UE is not capable of MPTCP, then the multi-RAT base station provides an LTE connection.
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公开(公告)号:US11191090B2
公开(公告)日:2021-11-30
申请号:US16794889
申请日:2020-02-19
Applicant: Parallel Wireless, Inc.
Inventor: Prashanth Rao , Murali Talluri , Praveen Puvvadi , Mohit Chugh , Kaitki Agarwal , Anoop Kumar , Syed Intekhab Anjum , Santosh Kumar Pandey , Sharique Qureshi , Rajesh Kumar Mishra
Abstract: Systems and methods are disclosed to address inter-cell interference in a heterogeneous network. In one embodiment, a system is disclosed, comprising: a coordinating node situated between a radio access network and a core network; and a first base station in the radio access network in communication with the coordinating node, wherein: the coordinating node has a coordinating scheduler with a first scheduling period; the first base station has a first base station scheduler with a second scheduling period shorter than the first scheduling period; the coordinating scheduler is configured to send a resource reservation list and a resource restriction list to the first base station scheduler once during each first scheduling period; and the first base station is configured to receive the resource reservation list and the resource restriction list and to use the resource reservation list and the resource restriction list when performing mobile device resource scheduling.
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公开(公告)号:US11165459B2
公开(公告)日:2021-11-02
申请号:US16929101
申请日:2020-07-14
Applicant: Parallel Wireless, Inc.
Inventor: Steven Paul Papa , Rajesh Kumar Mishra
Abstract: A system is disclosed, comprising: a wireless fronthaul access point coupled to a radio mast and in communication with a remote baseband unit, the wireless fronthaul access point further comprising a first millimeter wave wireless interface; and an antenna-integrated radio for providing access to user equipments (UEs), mounted within line of sight on the radio mast with the wireless fronthaul access point, the antenna-integrated radio further comprising: a second millimeter wave wireless interface configured to receive the digital I and Q signaling information from the remote baseband unit wirelessly via the wireless fronthaul access point, wherein the wireless fronthaul access point thereby wirelessly couples the remote baseband unit and the antenna-integrated radio.
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公开(公告)号:US11159980B2
公开(公告)日:2021-10-26
申请号:US16792556
申请日:2020-02-17
Applicant: Parallel Wireless, Inc.
Inventor: Rajesh Kumar Mishra , Steven Paul Papa
IPC: H04W28/02 , H04W8/22 , H04L12/851 , H04L12/865 , H04L12/823 , H04L12/801 , H04W28/12 , H04W76/50
Abstract: A method for signaling storm reduction is disclosed, comprising concentrating a plurality of signaling messages from a radio access network node to a core network node at a signaling concentrator; and processing the plurality of signaling messages with a mobile device identifier rule, at a rate equal to or greater than a line rate of a link from the radio access network to the signaling concentrator, wherein processing the plurality of signaling messages further comprises determining whether to drop each of the plurality of signaling messages.
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公开(公告)号:US11153933B2
公开(公告)日:2021-10-19
申请号:US16688292
申请日:2019-11-19
Applicant: Parallel Wireless, Inc.
Inventor: Sridhar Donepudi , Sumit Garg , Kaitki Agarwal , Rajesh Kumar Mishra , Steven Paul Papa
Abstract: We disclose systems and methods of dynamically virtualizing a wireless communication network. The communication network is comprised of heterogeneous multi-RAT mesh nodes coupled to a computing cloud component. The computing cloud component virtualizes the true extent of the resources it manages and presents an interface to the core network that appears to be a single base station.
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公开(公告)号:US20210282105A1
公开(公告)日:2021-09-09
申请号:US17195360
申请日:2021-03-08
Applicant: Parallel Wireless, Inc.
Inventor: Mahendra S. Rajput
Abstract: Systems, methods and computer software are disclosed for resolving multiple contexts for a User Equipment (UE) in a wireless network. In one embodiment a method includes maintaining, for a coordinating node hosting a first Radio Access Technology (RAT) controller and a second RAT controller simultaneously, a centrally maintained database; determining, based on the contents of the centrally maintained database, when the UE is registering with the second RAT controller while currently registered with the first RAT controller; and sending, by the second RAT controller, a deregistration command to the first RAT controller the UE was registered with, wherein context is freed and wherein resources held at both the coordinating node and at a base station are freed.
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530.
公开(公告)号:US11102044B2
公开(公告)日:2021-08-24
申请号:US16582811
申请日:2019-09-25
Applicant: Parallel Wireless, Inc.
Inventor: Hemanth Palally , Saikat Senapati , Somasekhar Pemmasani , Ramesh Annavajjala
Abstract: Systems, methods and computer software are disclosed for providing high resolution timing advance estimation based on Physical Random Access Channel (PRACH). An example method includes receiving a preamble signal r(n); performing signal conditioning on r(n); down sampling the signal and performing antialiasing filtering to provide a y(n) signal; correlating y(n) with a reference preamble with a reference preamble sequence c(n) to provide correlation output Ryc; using a peak value P of the correlation output Ryc to detect a preamble ID and a timing advance; constructing a sequence s(n) by segmenting r_centered(n) for length L around an index P*24; performing time domain interpolation of c(n) around index P to obtain a sequence c_interpolated(n); performing time domain interpolation between sequences s(n) and c_interpolated(n); detecting a peak position Q of the correlation; and deriving TA as P*24−L/2+q in terms of Ts.
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