System and Method for a Software Defined Protocol Network Node
    11.
    发明申请
    System and Method for a Software Defined Protocol Network Node 有权
    软件定义协议网络节点的系统和方法

    公开(公告)号:US20150207717A1

    公开(公告)日:2015-07-23

    申请号:US14160146

    申请日:2014-01-21

    CPC classification number: H04L41/082 H04L41/0823 H04L43/0876

    Abstract: A software designed protocol (SDP) network node includes a receiver, and a processor operatively coupled to the receiver. The receiver receives instructions, and receives packets. The processor updates a configuration of the SDP network node in accordance with the received instructions, and processes the received packets.

    Abstract translation: 软件设计协议(SDP)网络节点包括接收机和可操作地耦合到接收机的处理器。 接收器接收指令并接收数据包。 处理器根据接收到的指令更新SDP网络节点的配置,并处理接收的分组。

    Framework for Traffic Engineering in Software Defined Networking
    12.
    发明申请
    Framework for Traffic Engineering in Software Defined Networking 有权
    软件定义网络中流量工程框架

    公开(公告)号:US20150163147A1

    公开(公告)日:2015-06-11

    申请号:US14097930

    申请日:2013-12-05

    Abstract: System and method embodiments are provided for traffic engineering (TE) in software defined networking (SDN). The embodiments enable a complete end-to-end TE solution between a user equipment (UE) and a source/destination across a radio access network (RAN). In an embodiment, a method in a network component for TE in a SDN includes receiving TE information from a first core network component in a core network, a RAN component, wherein the RAN is communicably coupled to the core network, wherein the TE information includes a TE objective; and determining a TE decision between at least one UE and a second core network component in the core network according to the TE information and the TE objective, wherein the TE decision comprises information for at least one end-to-end path solution between the at least one UE and the second core network wherein the path traverses the core network and the RAN.

    Abstract translation: 为软件定义组网(SDN)中的流量工程(TE)提供了系统和方法实施例。 这些实施例能够在用户设备(UE)和跨越无线接入网络(RAN)的源/目的地之间实现完整的端到端TE解决方案。 在一个实施例中,SDN中的TE的网络组件中的方法包括从核心网络中的第一核心网络组件接收TE信息,RAN组件,其中RAN可通信地耦合到核心网络,其中TE信息包括 TE目标; 以及根据所述TE信息和所述TE目标,确定所述核心网络中的至少一个UE与所述第二核心网络组件之间的TE决定,其中,所述TE决定包括用于所述TE信息和所述TE目标之间的至少一个端到端路径解的信息 至少一个UE和第二核心网络,其中路径穿过核心网络和RAN。

    Contention-based Integration of Device to Device (D2D) Networks with Wireless Infrastructure
    13.
    发明申请
    Contention-based Integration of Device to Device (D2D) Networks with Wireless Infrastructure 有权
    基于竞争的集成设备到具有无线基础设施的设备(D2D)网络

    公开(公告)号:US20150056987A1

    公开(公告)日:2015-02-26

    申请号:US13973307

    申请日:2013-08-22

    Inventor: Xu Li Hang Zhang

    CPC classification number: H04W76/023 H04W8/005 H04W76/14

    Abstract: Efficient D2D link integration can be achieved by allowing mobile devices to independently initiate D2D/connection-proxy discovery without re-broadcasting beacons originating from the wireless access point. A mobile station wanting to establish a D2D link may broadcast a search message to neighboring mobile stations, which may return offer messages specifying a connection quality and/or parameters of the candidate indirect connection. The requesting mobile station may then select one of the responding neighboring mobile stations through which to establish the indirect connection. Responding mobile stations may delay offer message transmission by a period that is proportional to a connection quality to reduce offer message redundancy.

    Abstract translation: 可以通过允许移动设备独立地发起D2D /连接代理发现而不重新发送来自无线接入点的信标来实现高效的D2D链路集成。 想要建立D2D链路的移动台可以向邻近的移动台广播搜索消息,这可以返回指定连接质量的报价消息和/或候选间接连接的参数。 然后,请求移动台可以选择通过其中建立间接连接的响应的相邻移动台之一。 响应的移动台可以延迟提供消息传输一段与连接质量成正比的周期,以减少提供消息冗余。

    System and Method for Zining in Software Defined Networks
    15.
    发明申请
    System and Method for Zining in Software Defined Networks 有权
    软件定义网络中的Zining系统和方法

    公开(公告)号:US20150200859A1

    公开(公告)日:2015-07-16

    申请号:US14530332

    申请日:2014-10-31

    CPC classification number: H04L43/0876 H04L41/0823 H04L41/145 H04L47/125

    Abstract: An embodiment method of network zoning for a software defined network (SDN) includes determining a number, K, of zones according to at least one zone quantity parameter. Given K, a plurality of network nodes of the SDN are partitioned into K zones. The K zones are respectively assigned K SDN controllers. The K SDN controllers are configured to make traffic engineering decisions and carry out distributed network optimization for respective assigned network nodes among the plurality of network nodes.

    Abstract translation: 用于软件定义网络(SDN)的网络分区的实施例方法包括根据至少一个区域数量参数来确定区域的数量K。 给定K,SDN的多个网络节点被划分为K个区域。 K个区分别分配了K个SDN控制器。 K SDN控制器被配置为进行流量工程决策,并对多个网络节点之间的相应分配的网络节点进行分布式网络优化。

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