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    • 3. 发明公开
    • ETHERNET RELAY
    • 以太网继电器
    • EP3117544A1
    • 2017-01-18
    • EP15760889.4
    • 2015-03-10
    • Sckipio Technologies S.i Ltd
    • STERENSON, RonREINA, Guy
    • H04J14/00H04L12/00
    • H04L45/66H04B10/272H04L12/00H04L12/2869H04L12/2892H04L12/413H04L12/4641H04L45/16H04L49/15H04L49/25H04L49/35
    • A multi-port access node, for communicating data to-and-fro a plurality of transceiver units via a plurality of respective communication lines, comprising: a plurality of processors, each processor includes a main communication unit that includes a network-side port, said processor includes at least one line-side port associated with a respective one of said communication lines, at least one of said processors further includes a relay unit having a relay port, said relay unit Is coupled with said main communication unit of the same said processor, said relay port is coupled with at least one of said network-side port of at least one different said processor, wherein said relay unit is configured to relay at least part of said data in at least one of a downstream direction destined toward at least one of said transceiver units, and an upstream direction arriving from at least one of said transceiver units.
    • 1.一种多端口接入节点,用于经由多个相应通信线路向多个收发器单元往复传送数据,包括:多个处理器,每个处理器包括主通信单元,该主通信单元包括网络侧端口, 所述处理器包括与所述通信线路中的相应一个相关联的至少一个线路侧端口,所述处理器中的至少一个还包括具有中继端口的中继单元,所述中继单元与所述同一所述通信线路的所述主通信单元 处理器,所述中继端口与至少一个不同的所述处理器的所述网络侧端口中的至少一个耦合,其中所述中继单元被配置为在下行方向中的至少一个中继所述数据的至少一部分,所述下行方向指向 所述收发器单元中的至少一个,以及从至少一个所述收发器单元到达的上游方向。
    • 5. 发明公开
    • TRANSMISSION SCHEME FOR COMMUNICATION SYSTEMS
    • 通信系统的传输方案
    • EP3309983A1
    • 2018-04-18
    • EP17000409.7
    • 2013-03-28
    • Sckipio Technologies S.i Ltd
    • VERBIN, RamiREINA, GuySTERENSON, Ron
    • H04J3/00H04L5/26H04W72/04H04L5/00H04L1/20H04W52/02H04B1/38H04B3/32H04B3/46H04L5/14
    • H04L5/0044H04B1/38H04B3/32H04L1/20H04L5/0005H04L5/0007H04L5/0037H04L5/0087H04L5/1438H04L5/1469H04L5/1492H04W52/0251H04W72/04H04W72/0406Y02D70/00
    • Method for at least one transceiver-pair, each pair includes a first-transceiver and a second-transceiver. Each transceiver includes a transmitter and a receiver. The transceiver-pair defines downlink between the transmitter of a first-transceiver and the receiver of a second-transceiver and an uplink between the transmitter of the second-transceiver and the receiver of the first-transceiver. The first-transceivers are located in a multi-link device. Each transceiver-pair transmitting data over a data-frame. The method includes determining a respective active-set for each pair. The active-set includes a combination of selected logical-allocation-units. Each logical-allocation-unit is defined as a unique combination of time-slot and frequency-band. Each logical-allocation-unit relates to downlink or uplink. The method further includes transmitting, by each pair, according to the respective active-set. The active-set is determined to meet at least one of power-dissipation-requirements and temperature-requirements at least within the multi-link device and data-traffic requirements. The active-set is determined according to at least one of, power-dissipation and temperature related to the multi-link device and data-traffic.
    • 用于至少一个收发器对的方法,每一对包括第一收发器和第二收发器。 每个收发器包括一个发射器和一个接收器 收发器对定义第一收发器的发射器与第二收发器的接收器之间的下行链路以及第二收发器的发射器与第一收发器的接收器之间的上行链路。 第一个收发器位于多链路设备中。 每个收发器对在数据帧上传输数据。 该方法包括确定每对的相应有效集。 活动集包括选定的逻辑分配单元的组合。 每个逻辑分配单元被定义为时隙和频带的唯一组合。 每个逻辑分配单元涉及下行链路或上行链路。 该方法还包括根据相应的活动集通过每对发送。 至少在多链路设备和数据业务需求内确定活动集合满足功耗要求和温度要求中的至少一个。 根据与多链路设备和数据业务相关的功率消耗和温度中的至少一个来确定有源组。