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公开(公告)号:US12041115B2
公开(公告)日:2024-07-16
申请号:US17693659
申请日:2022-03-14
Applicant: JUGANU LTD.
Inventor: Pinchas Ziv , Reuven Cohen , Eran Ben-Shmuel , Alexander Bilchinsky , Eran Efrati
Abstract: Approaches for updating a firmware file in a network having multiple transceiver nodes and being capable of receiving and transmitting the firmware file include dividing the firmware file into multiple of chunks, each chunk being able to be included in a single data packet transmitted between two of the transceiver nodes; transmitting each of the chunks from the first one of the transceiver nodes to the second one of the transceiver nodes; transmitting a request message from the first one of the transceiver nodes to the second one of the transceiver nodes, the request message including information associated with the chunks that have been transmitted in step (b); and transmitting a responding message from the second one of the transceiver nodes to the first one of the transceiver nodes, the responding message including information associated with one or more chunks that are included in the request message but not received by the second one of the transceiver nodes.
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公开(公告)号:US20230247569A1
公开(公告)日:2023-08-03
申请号:US18171819
申请日:2023-02-21
Applicant: Juganu Ltd.
Inventor: Pinchas Ziv , Alexander Bilchinsky , Dani Fichman , Gal Zuckerman , Mark Altshuller
IPC: H04W56/00
CPC classification number: H04W56/00
Abstract: A backhaul system operative to: increase network capacity, prevent unwanted re-transmissions, and facilitate multiple hopes. The system utilizes a first sequence and a second sequence of periods in conjunction with wireless packet transmission by several adjacent nodes, thereby (i) preventing a transmission of a downlink packet to a mid-point communication node from interfering with reception of any previous downlink packet in a node adjacent to the mid-point node, (ii) preventing a transmission of an uplink packet to the mid-point node from interfering with reception of any previous uplink packet in yet another node that is also adjacent to the mid-point node, and (iii) preventing transmissions of packets by the mid-point node from interfering with reception of any other packet in the mid-point node. Multiple beams are then used to counter a residual effect of multiple transmissions arriving in the mid-point node at the same time.
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公开(公告)号:US12284615B2
公开(公告)日:2025-04-22
申请号:US18171819
申请日:2023-02-21
Applicant: Juganu Ltd.
Inventor: Pinchas Ziv , Alexander Bilchinsky , Dani Fichman , Gal Zuckerman , Mark Altshuller
IPC: H04W56/00
Abstract: A backhaul system operative to: increase network capacity, prevent unwanted re-transmissions, and facilitate multiple hopes. The system utilizes a first sequence and a second sequence of periods in conjunction with wireless packet transmission by several adjacent nodes, thereby (i) preventing a transmission of a downlink packet to a mid-point communication node from interfering with reception of any previous downlink packet in a node adjacent to the mid-point node, (ii) preventing a transmission of an uplink packet to the mid-point node from interfering with reception of any previous uplink packet in yet another node that is also adjacent to the mid-point node, and (iii) preventing transmissions of packets by the mid-point node from interfering with reception of any other packet in the mid-point node. Multiple beams are then used to counter a residual effect of multiple transmissions arriving in the mid-point node at the same time.
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公开(公告)号:US11652514B1
公开(公告)日:2023-05-16
申请号:US17649408
申请日:2022-01-31
Applicant: Juganu Ltd.
Inventor: Pinchas Ziv , Alexander Bilchinsky , Dani Fichman , Gal Zuckerman
IPC: H04B7/0413 , H04L41/08
CPC classification number: H04B7/0413 , H04L41/08
Abstract: System and methods for wirelessly transporting data from a first communication node to a second communication node using different combinations of beams and on a packet-by-packet basis. Packets associated with a certain Quality of Service (QoS) and/or latency requirements are transported between the first and the second nodes using a first transmission path, while packets associated with a different QoS/latency requirements, are transported between the first and the second nodes using another transmission path, in which in order to switch from the first path to the second path, the system adjusts appropriate beam directions in real-time, and so as to result in fast-switching beam configurations that dynamically change in accordance to packet movement in the network. Latency-critical packets are directed to the faster path, while other packets are directed to the slower path, so as to prevent network congestion and optimize overall network performance.
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