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    • 3. 发明申请
    • IDENTIFYING FAULT LOCATIONS IN A NETWORK
    • 识别网络中的故障位置
    • US20110280567A1
    • 2011-11-17
    • US12779601
    • 2010-05-13
    • Daniel Paul LyonCatherine Haiyan YuanSanjay GeraVikas Mittal
    • Daniel Paul LyonCatherine Haiyan YuanSanjay GeraVikas Mittal
    • H04B10/08
    • H04B10/0791H04B2210/071H04J3/14H04J2203/006
    • Systems and methods for identifying a fault location in an optical network are disclosed. In accordance with one embodiment of the present disclosure, a method for identifying a fault location in an optical network comprises monitoring, by a network element, an eastward optical path and a westward optical path for faults. The method further comprises transmitting, by the network element, a first data packet along the eastward path and a second data packet along the westward path. The first and second data packets comprise an eastward fault indicator and a westward fault indicator comprising information associated with any eastward or westward faults occurring on the eastward or westward paths. The fault indicators indicate the existence of an eastward or westward fault and the network element that detected the fault.
    • 公开了用于识别光网络中的故障定位的系统和方法。 根据本公开的一个实施例,一种用于识别光网络中的故障定位的方法包括通过网络元件监视用于故障的向东光路和向西光路。 该方法还包括由网元发送沿着东向路径的第一数据分组和沿着西向路径的第二数据分组。 第一和第二数据分组包括东向故障指示符和西向故障指示符,其包括与向东或向西路径上发生的任何东向或西向故障相关联的信息。 故障指标表明存在东向或西向故障,网络元素检测到故障。
    • 5. 发明授权
    • Identifying fault locations in a network
    • 识别网络中的故障位置
    • US08699873B2
    • 2014-04-15
    • US12779601
    • 2010-05-13
    • Daniel Paul LyonCatherine Haiyan YuanSanjay GeraVikas Mittal
    • Daniel Paul LyonCatherine Haiyan YuanSanjay GeraVikas Mittal
    • H04B10/00H04J1/16
    • H04B10/0791H04B2210/071H04J3/14H04J2203/006
    • Systems and methods for identifying a fault location in an optical network are disclosed. In accordance with one embodiment of the present disclosure, a method for identifying a fault location in an optical network comprises monitoring, by a network element, an eastward optical path and a westward optical path for faults. The method further comprises transmitting, by the network element, a first data packet along the eastward path and a second data packet along the westward path. The first and second data packets comprise an eastward fault indicator and a westward fault indicator comprising information associated with any eastward or westward faults occurring on the eastward or westward paths. The fault indicators indicate the existence of an eastward or westward fault and the network element that detected the fault.
    • 公开了用于识别光网络中的故障定位的系统和方法。 根据本公开的一个实施例,一种用于识别光网络中的故障定位的方法包括通过网络元件监视用于故障的向东光路和向西光路。 该方法还包括由网元发送沿着东向路径的第一数据分组和沿着西向路径的第二数据分组。 第一和第二数据分组包括东向故障指示符和西向故障指示符,其包括与向东或向西路径上发生的任何东向或西向故障相关联的信息。 故障指标表明存在东向或西向故障,网络元素检测到故障。
    • 7. 发明申请
    • ROUTING AROUND INTRA-NETWORK ELEMENT DISCONNECTIVITY
    • 在网络元素间断开连接
    • US20130287018A1
    • 2013-10-31
    • US13456133
    • 2012-04-25
    • Daniel Louis MILLERLadan PICKERINGSanjay GERAEdward A. HARBINAlbert V. SMITH, JR.
    • Daniel Louis MILLERLadan PICKERINGSanjay GERAEdward A. HARBINAlbert V. SMITH, JR.
    • H04L12/50
    • H04L45/28H04L12/6418H04L45/12
    • Routing around intra-network element (intra-NE) disconnectivity is described. The routing is performed on one or more network element (NEs) of a channelized network. The routing involves performing a shortest-path-search (SPS) to determine a shortest non-disconnected path from a single path-ingress edge to a single path-egress edge. The SPS includes classifying a set of endpoints of each NE in the channelized network as an equivalence class of endpoints, classifying a set of paths-so-far between each NE in the channelized network as an equivalence class of paths-so-far, grouping each equivalence class of paths-so-far by the equivalence class of endpoints that includes a terminal endpoint of the path-so-far that is furthest from the single path-ingress edge, and exploring separately each equivalence class of edges that are incident to each NE when determining the shortest non-disconnected path from the single path-ingress edge to the single path-egress edge.
    • 描述了围绕网内元件(NE内)断开连接的路由。 路由在信道化网络的一个或多个网元(NE)上执行。 该路由涉及执行最短路径搜索(SPS)以确定从单个路径入口边缘到单个路径出口边缘的最短非断开路径。 SPS包括将信道化网络中的每个NE的一组端点分类为端点的等价类,将在信道化网络中的每个NE之间的路径集合进行分类,作为到目前为止的路径的等价类别 每个等价类的路径 - 远远超过端点的等价类,其中包括距离单个路径入口边缘最远的路径的终端,并分别探索入侵到每个边缘的等价类别 当确定从单个路径入口边缘到单个路径出口边缘的最短非断开路径时,每个NE。