DOMINATING SET IDENTIFICATION FOR PATH COMPUTATION BASED ON DIRECTED ACYCLIC GRAPH MEMBERSHIP
    1.
    发明申请
    DOMINATING SET IDENTIFICATION FOR PATH COMPUTATION BASED ON DIRECTED ACYCLIC GRAPH MEMBERSHIP 有权
    基于指导的交流图表成员进行路径计算的定位集识别

    公开(公告)号:US20150078204A1

    公开(公告)日:2015-03-19

    申请号:US14030949

    申请日:2013-09-18

    Abstract: In one embodiment, a method comprises a path computation device receiving device information from member network devices, each member network device belonging to a directed acyclic graph to a destination in a low power lossy network; and the path computation device classifying each member network device belonging to a directed acyclic graph as belonging to a dominating set, for generation of optimized routes distinct from any directed acyclic graph, for reaching any one of the member network devices of the dominating set.

    Abstract translation: 在一个实施例中,一种方法包括路径计算设备,从成员网络设备接收设备信息,每个成员网络设备属于低功率有损网络中的目的地的有向非循环图; 以及路径计算装置,将属于有向非循环图的每个成员网络装置分类为属于主导集合,用于生成与任何有向无环图不同的优化路线,用于到达主导集合的任何一个成员网络装置。

    MULTIPLE PATH AVAILABILITY BETWEEN WALKABLE CLUSTERS
    2.
    发明申请
    MULTIPLE PATH AVAILABILITY BETWEEN WALKABLE CLUSTERS 有权
    沃尔特群集之间的多路径可用性

    公开(公告)号:US20140122741A1

    公开(公告)日:2014-05-01

    申请号:US13768453

    申请日:2013-02-15

    CPC classification number: H04L45/04 H04L45/02 H04L45/28 H04L45/46

    Abstract: In one embodiment, a method comprises creating, in a computing network, a hierarchal routing topology for reaching a destination, the hierarchal routing topology comprising a single parent supernode providing reachability to the destination, and a plurality of child supernodes, each child supernode comprising one or more exit network devices each providing a corresponding link to the parent supernode; receiving, in one of the child supernodes, a data packet for delivery to the destination; causing the data packet to traverse along any available data link in the one child supernode independent of any routing topology established by network devices in the one child supernode, until the data packet reaches one of the exit network devices; and the one exit network device forwarding the data packet to the parent supernode, via the corresponding link, for delivery to the destination.

    Abstract translation: 在一个实施例中,一种方法包括在计算网络中创建用于到达目的地的分层路由拓扑,所述分层路由拓扑包括提供到达目的地的可达性的单个父超节点以及多个子超节点,每个子超节点包括一个 或多个出口网络设备,每个退出网络设备提供到父级超级节点的对应链路; 在其中一个子超文本中接收用于传送到目的地的数据包; 使得数据分组沿着所述一个子超节点中的任何可用数据链路遍历,独立于由所述一个子超节点中的网络设备建立的任何路由拓扑,直到所述数据分组到达所述退出网络设备之一; 并且一个出口网络设备经由相应的链路将数据分组转发到父超节点,以传送到目的地。

    TRANSPARENT ROAMING IN VIRTUAL ACCESS POINT (VAP) ENABLED NETWORKS

    公开(公告)号:US20230074297A1

    公开(公告)日:2023-03-09

    申请号:US17887706

    申请日:2022-08-15

    Abstract: In one embodiment, a supervisory device in a network forms a virtual access point (VAP) for a node in the network. A set of access points (APs) in the network are mapped to the VAP as part of a VAP mapping and the node treats the APs in the VAP mapping as a single AP for purposes of communicating with the network. The supervisory device receives measurements from the APs in the VAP mapping regarding communications associated with the node. The supervisory device identifies a movement of the node based on the received measurements from the APs in the VAP mapping. The supervisory device adjusts the set of APs in the VAP mapping based on the identified movement of the node.

    PROTOCOL INDEPENDENT SIGNAL SLOTTING AND SCHEDULING

    公开(公告)号:US20210297509A1

    公开(公告)日:2021-09-23

    申请号:US16823070

    申请日:2020-03-18

    Abstract: Protocol independent signal slotting and scheduling is provided by receiving a frame including a header and a payload for transmission; in response to determining that the frame matches a rule identifying the frame as part of a control loop, compressing the header according to the rule to produce a compressed packet of a predefined size that includes the compressed header and the payload; scheduling transmission of the compressed packet; and transmitting the compressed packet to a receiving device. In some embodiments, before compressing the frame, in response to determining that a size of the payload does not match a predefined size threshold: the payload is fragmented into a plurality of portions, wherein each portion satisfies the predefined size threshold, or the compressed packet is padded to the predefined size threshold via forward error correction padding information.

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