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    • 3. 发明申请
    • NEXT HOP COMPUTATION FUNCTIONS FOR EQUAL COST MULTI-PATH PACKET SWITCHING NETWORKS
    • 用于均衡成本多路径分组交换网络的下一个HOP计算功能
    • WO2012112834A2
    • 2012-08-23
    • PCT/US2012025552
    • 2012-02-17
    • ROCKSTAR BIDCO LPCHIABAUT JEROME
    • CHIABAUT JEROME
    • H04L45/38H04L45/24H04L47/125
    • Next hop computation functions for use in a per-node ECMP path determination algorithm are provided, which increase traffic spreading between network resources in an equal cost multi-path packet switch network. In one embodiment, packets are mapped to output ports by causing each ECMP node on the network to implement an entropy preserving mapping function keyed with unique key material. The unique key material enables each node to instantiate a respective mapping function from a common function prototype such that a given input will map to a different output on different nodes. Where an output set of the mapping function is larger than the number of candidate output ports, a compression function is used to convert the keyed output of the mapping function to the candidate set of ECMP ports
    • 提供了用于每节点ECMP路径确定算法的下一跳计算功能,其增加了在相同成本的多路径分组交换网络中的网络资源之间的业务量传播。 在一个实施例中,通过使网络上的每个ECMP节点实现用唯一密钥材料键入的熵保留映射功能,将分组映射到输出端口。 唯一的密钥材料使每个节点能够从公共功能原型中实例化相应的映射函数,使得给定的输入将映射到不同节点上的不同输出。 在映射函数的输出集合大于候选输出端口数量的情况下,使用压缩函数将映射函数的键控输出转换为候选集ECMP端口
    • 7. 发明申请
    • FACE TRACKING FOR MUTE-CONTROL
    • 面部跟踪用于静音控制
    • WO2014035372A1
    • 2014-03-06
    • PCT/US2012/052628
    • 2012-08-28
    • ROCKSTAR BIDCO, LPYOAKUM, John, H.
    • YOAKUM, John, H.
    • H04M1/725G06K9/00G06F3/01G06T7/00
    • G06F3/012G06K9/00221G06T7/74G06T2207/30201H04M1/72555H04M1/72577H04M2250/52
    • Systems, methods, and devices are disclosed for operating a user communication device (12) having a mute function. The systems, methods, and devices allow for the mute function to be controlled in accordance with a facial orientation of the user. In one exemplary embodiment, a controller (28) is operably associated with a camera (18) and a user communication device (12). The controller (28) may be internal to the user communication device (12) or may be external in an ancillary device (20). The controller (28) is configured to obtain a visual representation that includes a facial image of a face of a user captured with the camera (18). To determine facial orientation data that indicates a facial orientation of the face from the facial image, the controller (28) implements an image processing function on the visual representation. The controller (28) controls the mute function of the user communication device (12) based on the facial orientation data extracted from the visual representation.
    • 公开了用于操作具有静音功能的用户通信设备(12)的系统,方法和设备。 系统,方法和设备允许根据用户的面部方向来控制静音功能。 在一个示例性实施例中,控制器(28)可操作地与照相机(18)和用户通信设备(12)相关联。 控制器(28)可以在用户通信设备(12)的内部,或者可以在辅助设备(20)中的外部。 控制器(28)被配置为获得包括用相机(18)捕获的用户的脸部的面部图像的视觉表示。 为了确定指示面部从面部图像的面部朝向的面部方向数据,控制器(28)对视觉表示执行图像处理功能。 控制器(28)基于从视觉表示提取的面部取向数据来控制用户通信设备(12)的静音功能。
    • 9. 发明申请
    • TIE-BREAKING IN SHORTEST PATH DETERMINATION
    • 在最短路径确定中进行切割
    • WO2013173900A1
    • 2013-11-28
    • PCT/CA2012/050337
    • 2012-05-22
    • ROCKSTAR BIDCO LPCHIABAUT, Jerome
    • CHIABAUT, Jerome
    • H04L12/56
    • H04L45/12H04L45/20H04L45/48
    • A consistent tie-breaking decision between equal-cost shortest (lowest cost) paths is achieved by comparing an ordered set of node identifiers for each of a plurality of end- to-end paths. Alternatively, the same results can be achieved, on-the-fly, as a shortest path tree is constructed, by making a selection of an equal-cost path using the node identifiers of the diverging branches of the tree. Both variants allow a consistent selection to be made of equal-cost paths, regardless of where in the network the shortest paths are calculated. This ensures that traffic flow between any two nodes, in both the forward and reverse directions, will always follow the same path through the network.
    • 通过比较多个端对端路径中的每一个的有序节点标识符集来实现等成本最短(最低成本)路径之间的一致的打破决定。 或者,通过使用树的分支分支的节点标识符选择等价路径,可以实时地实现与最短路径树相同的结果。 这两种变体允许对等成本路径进行一致的选择,而不管网络中哪些地方计算最短路径。 这确保任何两个节点之间在正向和反向方向上的业务流量将始终遵循通过网络的相同路径。
    • 10. 发明申请
    • NEXT HOP COMPUTATION FUNCTIONS FOR EQUAL COST MULTI-PATH PACKET SWITCHING NETWORKS
    • 等成本多路径分组交换网络的下一步HOP计算功能
    • WO2012112834A3
    • 2013-02-21
    • PCT/US2012025552
    • 2012-02-17
    • ROCKSTAR BIDCO LPCHIABAUT JEROME
    • CHIABAUT JEROME
    • H04L12/28
    • H04L45/38H04L45/24H04L47/125
    • Next hop computation functions for use in a per-node ECMP path determination algorithm are provided, which increase traffic spreading between network resources in an equal cost multi-path packet switch network. In one embodiment, packets are mapped to output ports by causing each ECMP node on the network to implement an entropy preserving mapping function keyed with unique key material. The unique key material enables each node to instantiate a respective mapping function from a common function prototype such that a given input will map to a different output on different nodes. Where an output set of the mapping function is larger than the number of candidate output ports, a compression function is used to convert the keyed output of the mapping function to the candidate set of ECMP ports
    • 提供用于每节点ECMP路径确定算法的下一跳计算函数,其增加了等价多路径分组交换网络中的网络资源之间的业务量传播。 在一个实施例中,通过使网络上的每个ECMP节点实现以唯一密钥材料为密钥的熵保持映射功能,将分组映射到输出端口。 唯一的关键材料使每个节点都能够从一个通用函数原型实例化相应的映射函数,以便给定的输入将映射到不同节点上的不同输出。 在映射函数的输出集大于候选输出端口的数量的情况下,使用压缩函数将映射函数的键控输出转换为候选的ECMP端口集