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    • 1. 发明授权
    • Integrated quality of service interface for ethernet radio
    • 以太网广播的综合服务质量接口
    • US08830906B1
    • 2014-09-09
    • US12872772
    • 2010-08-31
    • Leonid ShoustermanItzhak Ben-BassatYigal Leiba
    • Leonid ShoustermanItzhak Ben-BassatYigal Leiba
    • H04W4/00H04B7/204
    • H04W4/80
    • A system includes a networking enabled system and a packet radio system. The packet radio system includes a wireless interface and a packet interface. The packet interface includes at least two queues, each queue configured to store a certain class of packets of Ethernet. A cable is operative to transport the packets from the networking enabled system to the packet interface using Ethernet signaling. The packet interface is configured to ascertain from time to time the rate at which the packets are sent from the queues over the wireless interface, and according to the rate, indicate dynamically to the network enabled system the classes of packets for which packets are to be sent over the cable for storage in the appropriate queues. The network enabled system is configured to send, over the cable, packets of classes indicated by the packet interface, while holding back other packets.
    • 一种系统包括一个可组网的系统和一个分组无线电系统。 分组无线电系统包括无线接口和分组接口。 分组接口包括至少两个队列,每个队列被配置为存储特定类别的以太网分组。 电缆用于使用以太网信令将数据包从使能网络的系统传输到数据包接口。 分组接口被配置为不时地确定通过无线接口从队列发送分组的速率,并且根据速率向网络启用系统动态地指示分组将分组的分组类型 通过电缆发送以存储在适当的队列中。 网络使能系统配置为通过电缆发送数据包接口指示的类别数据包,同时阻止其他数据包。
    • 3. 发明授权
    • Ring-like communication architecture
    • 环形通信架构
    • US08406126B1
    • 2013-03-26
    • US12872968
    • 2010-08-31
    • Yigal LeibaIzhak KirshenbaumLeonid Shousterman
    • Yigal LeibaIzhak KirshenbaumLeonid Shousterman
    • H04J1/16H04L12/28
    • H04L1/22
    • A system for fault-tolerant communication includes N nodes, out of which one is a gateway node, and N data links, each data link connecting two of the nodes, forming a ring structure. At least two of the data links are wireless data links. The system substantially do not use one of the wireless data links to send data, effectively partitioning the ring structure into a first chain and a second chain. The system sends data downstream direction and upstream direction, through the first and second chains. The system detaches at least one node from the first chain, by substantially stop using a wireless data link having a reduction in performance and belonging to the first chain, and connects the at least one node to the second chain by starting to use the wireless data link that was substantially not in use.
    • 用于容错通信的系统包括N个节点,其中一个是网关节点,N个数据链路,每个数据链路连接两个节点,形成一个环形结构。 至少两个数据链路是无线数据链路。 系统基本上不使用无线数据链路之一发送数据,有效地将环结构分成第一链和第二链。 系统通过第一和第二链发送下行方向和上游方向的数据。 该系统通过基本上停止使用性能下降且属于第一链的无线数据链路,从第一链路中分离出至少一个节点,并且通过开始使用无线数据将至少一个节点连接到第二链路 链接基本上没有被使用。
    • 4. 发明授权
    • Backhaul aware radio access networks
    • 回程感知无线电接入网络
    • US08385921B1
    • 2013-02-26
    • US12872860
    • 2010-08-31
    • Leonid ShoustermanYigal Leiba
    • Leonid ShoustermanYigal Leiba
    • H04W36/18
    • H04L43/0882H04B7/0617H04L41/0896H04L45/125H04L45/22H04L45/302H04L45/48H04L45/70H04W36/18
    • A system for communicating between Radio Access nodes includes a Radio Access Network (RAN) comprising a plurality of Radio Access nodes and a backhaul system interconnecting the Radio Access nodes. The backhaul system identifies at least some paths belonging to the backhaul system, each path interconnecting a pair of Radio Access nodes belonging to the RAN. The backhaul system ascertains, per path, at least one type of Traffic Engineering (TE) metric associated with transporting data between a pair of Radio Access nodes, and convey, per path, the TE metric, to the pair of Radio Access nodes. Optionally, the pair of Radio Access nodes perform a real-time data exchange, provided that the TE metric, conveyed to one of the Radio Access node of the pair, indicates that such an exchange is viable using the path. Optionally, at least some of the paths comprise wireless data links.
    • 用于在无线接入节点之间进行通信的系统包括包括多个无线接入节点的无线接入网络(RAN)和互连无线接入节点的回程系统。 回程系统识别属于回程系统的至少一些路径,每个路径互连属于RAN的一对无线接入节点。 回程系统根据每个路径确定与在一对无线电接入节点之间传输数据相关联的至少一种类型的业务工程(TE)度量,并且将TE度量传送到该无线电接入节点对。 可选地,一对无线电接入节点执行实时数据交换,只要传送给该对的无线接入节点之一的TE度量指示使用该路径可以使用这种交换。 可选地,至少一些路径包括无线数据链路。
    • 6. 发明申请
    • METHOD FOR BROADCASTING/MULTICASTING TRANSMISSIONS IN WIRELESS NETWORKS
    • 在无线网络中广播/多媒体传输的方法
    • US20110149825A1
    • 2011-06-23
    • US12921084
    • 2009-03-02
    • Nadav LaviLeonid Shousterman
    • Nadav LaviLeonid Shousterman
    • H04W4/06
    • H04W76/002H04L12/1845H04W36/0016H04W36/0072H04W72/005H04W76/11H04W76/40
    • In a wireless communications network comprising a plurality of multicast and broadcast service (MBS) zones each of which comprises at least one base station, there is provided a method for providing a multicast and broadcast service to a mobile terminal capable of moving from one MBS zone to another. The method comprises the steps of: providing the mobile terminal with one or more multicasting/broadcasting transmissions comprising at least one multicast connection identification (MCID) associated with an MBS zone other than a current MBS zone at which the mobile terminal is currently receiving the one or more multicasting/broadcasting transmissions; retrieving information regarding the at least one MCID; and upon detecting that the mobile terminal is capable of receiving transmissions associated with the other MBS_ZONE, utilizing the MCID associated with that other MBS_ZONE to receive multicasting/broadcasting transmissions intended for that mobile terminal.
    • 在包括多个多播和广播服务(MBS)区域的无线通信网络中,每个区域包括至少一个基站,提供了一种用于向能够从一个MBS区域移动的移动终端提供多播和广播服务的方法 到另一个 该方法包括以下步骤:向移动终端提供一个或多个多播/广播传输,其包括与除当前MBS区域之外的MBS区域相关联的至少一个多播连接标识(MCID),移动终端当前正在接收一个 或更多的多播/广播传输; 检索关于所述至少一个MCID的信息; 并且在检测到移动终端能够接收与另一个MBS_ZONE相关联的传输时,利用与该其他MBS_ZONE相关联的MCID来接收旨在用于该移动终端的组播/广播传输。
    • 7. 发明授权
    • Method and device for synchronization in wireless networks
    • 无线网络同步的方法和设备
    • US07903540B2
    • 2011-03-08
    • US11833065
    • 2007-08-02
    • Leonid ShoustermanOleg MarinchencoMark AltshulerNadav Lavi
    • Leonid ShoustermanOleg MarinchencoMark AltshulerNadav Lavi
    • H04J3/06
    • H04L49/55H04L5/003H04L12/189H04W4/06H04W24/08H04W56/00H04W56/001H04W72/005H04W72/1263H04W92/045H04W92/20
    • A method and device are provided for synchronizing data transmission of multicasting/broadcasting services (MBS) by a plurality of Base Stations. The method disclosed includes providing synchronization information to enable the plurality of Base Stations to start transmitting MBS data at a synchronized starting time point. Meanwhile, each of the Base Stations receives the MBS data to be transmitted and determines whether any of the MBS data has not been properly received. If so, the respective Base Station initiates a process to recover the missing MBS data or to obtain within a pre-determined time interval, information regarding the missing data to determine the duration of the time period that would have been required for transmitting the missing MBS. If the missing data has not been timely recovered, the respective Base Station determines a starting point and duration of a silence period based on the information obtained, and refrains from transmitting signals along a communication channel allocated for transmission of MBS data, during that silence period.
    • 提供了一种方法和装置,用于同步多个基站的组播/广播业务(MBS)的数据传输。 所公开的方法包括提供同步信息以使得多个基站能够在同步的起始时间点开始发送MBS数据。 同时,每个基站接收要发送的MBS数据,并确定是否有任何MBS数据未被正确接收。 如果是,则相应的基站发起恢复丢失的MBS数据或在预定的时间间隔内获得关于丢失数据的信息的过程,以确定传输丢失的MBS所需的时间段的持续时间 。 如果缺少的数据尚未及时恢复,则各基站基于所获得的信息确定静默期的起始点和持续时间,并且在该静默期期间禁止沿着分配用于传送MBS数据的通信信道发送信号 。
    • 8. 发明申请
    • Method of paging a mobile terminal
    • 寻呼移动终端的方法
    • US20070202871A1
    • 2007-08-30
    • US11362373
    • 2006-02-27
    • Mark AltshullerOleg MarinchencoLeonid Shousterman
    • Mark AltshullerOleg MarinchencoLeonid Shousterman
    • H04Q7/20
    • H04W68/06
    • In a wireless network which comprises a first plurality of base stations and a second plurality of access network gateways, there is provided a method for tracking and/or paging a mobile terminal, wherein the method comprises the steps of: providing a mobile terminal located within the wireless network, and wherein the mobile terminal is in an active mode; selecting a first access network gateway out of the second plurality of access network gateways to be an anchor gateway for location and/or paging control for the mobile terminal; and upon receiving at the first access network gateway a request for a location update of the mobile terminal which has meanwhile entered an idle mode, selecting a base station for communicating with the mobile terminal from among the first plurality of base stations, and providing the selected base station with information required for verifying the identity of the mobile terminal and/or for retaining the security integrity of the selected base station while carrying out location update of the mobile terminal. Preferably, the paging Controller ID (or its location) is used for the update of the traffic anchored GW, and can then be used for allocating the paging controller by the traffic anchored GW during the paging procedure.
    • 在包括第一多个基站和第二多个接入网络网关的无线网络中,提供了一种用于跟踪和/或寻呼移动终端的方法,其中所述方法包括以下步骤:提供位于 所述无线网络,并且其中所述移动终端处于活动模式; 从所述第二多个接入网络网关中选择第一接入网络网关作为用于所述移动终端的位置和/或寻呼控制的锚网关; 并且在所述第一接入网络网关接收到同时进入空闲模式的所述移动终端的位置更新请求时,从所述第一多个基站中选择用于与所述移动终端进行通信的基站,并且提供所选择的 具有用于验证移动终端的身份和/或用于在执行移动终端的位置更新时保持所选择的基站的安全完整性所需的信息的基站。 优选地,寻呼控制器ID(或其位置)用于更新流量锚定GW,然后可以用于在寻呼过程期间由业务锚定GW分配寻呼控制器。