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    • 6. 发明申请
    • SIGNALING COMPRESSION INFORMATION USING ROUTING PROTOCOLS
    • 使用路由协议的信令压缩信息
    • US20090052452A1
    • 2009-02-26
    • US11844119
    • 2007-08-23
    • Keyur PatelAbhay RoyRobert Raszuk
    • Keyur PatelAbhay RoyRobert Raszuk
    • H04L12/56
    • H04L45/04H04L69/04
    • An ability to compress packets is announced from a customer edge router (CE) to other CEs through a routing protocol packet. An announcement of that ability is received from another CE through a routing protocol packet. A compression technique is then matched. The CE receives compression information from the other CE in a routing protocol packet, and determines that a compression technique identified therein matches any compression technique the CE is programmed to use. The CE then flags packets transmitted from/received by the CE to be compressed/decompressed according to the matched compression technique. Alternatively, the CE may match by transmitting compression information identifying a compression technique to the another CE in a routing protocol packet; the another CE receives the routing protocol packet and determines that a compression technique identified in the compression information of the routing protocol packet matches any compression technique the another CE is programmed to use.
    • 通过路由协议包从客户边缘路由器(CE)到其他CE,宣布压缩数据包的能力。 通过路由协议包从另一个CE接收到该能力的通知。 然后匹配压缩技术。 CE在路由协议分组中从其他CE接收压缩信息,并确定其中识别的压缩技术与CE被编程使用的任何压缩技术相匹配。 CE然后根据匹配的压缩技术标记由CE发送/接收的数据包以进行压缩/解压缩。 或者,CE可以通过在路由协议分组中向另一CE发送标识压缩技术的压缩信息来匹配; 另一个CE接收路由协议分组,并确定在路由协议分组的压缩信息中识别的压缩技术与另一个CE被编程使用的任何压缩技术匹配。
    • 7. 发明授权
    • Loop prevention technique for MPLS using two labels
    • 使用两个标签的MPLS环路防护技术
    • US07633859B2
    • 2009-12-15
    • US11046163
    • 2005-01-26
    • Clarence FilsfilsJim GuichardJean-Philippe VasseurStefano B. PrevidiRobert Raszuk
    • Clarence FilsfilsJim GuichardJean-Philippe VasseurStefano B. PrevidiRobert Raszuk
    • H04L12/56
    • H04L45/00H04L45/18H04L45/22H04L45/28H04L45/50H04W12/02
    • A fast reroute (FRR) technique is implemented at the edge of a network. In accordance with the technique, if an edge device detects a node or link failure that prevents it from communicating with a neighboring routing domain, the edge device reroutes at least some data packets addressed to that domain to a backup edge device which, in turn, forwards the packets to the neighboring domain. The rerouted packets are designated as being “protected” (i.e., rerouted) data packets before they are forwarded to the backup edge device. To differentiate which data packets are protected and which are not, the backup edge device employs different sets of VPN label values for protected and non-protected network traffic. That is, the backup edge device may allocate two different VPN label values for at least some destination address prefixes that are reachable through the neighboring domain: a first VPN label value for FRR protected traffic and a second VPN label value for non-protected traffic. Upon receiving a data packet containing a protected VPN label value, the backup edge device is not permitted to reroute the packet a second time, e.g., in response to another inter-domain node or link failure, thereby preventing loops from developing at the edge of the network.
    • 在网络边缘实现快速重路由(FRR)技术。 根据该技术,如果边缘设备检测到阻止其与相邻路由域通信的节点或链路故障,则边缘设备将至少一些寻址到该域的数据分组重新路由到备用边缘设备, 将数据包转发到相邻域。 重新路由的数据包在被转发到备份边缘设备之前被指定为“保护”(即重新路由)数据分组。 为了区分哪些数据包受到保护,哪些数据包不受保护,备份边缘设备对受保护和未受保护的网络流量采用不同的VPN标签值集合。 也就是说,备份边缘设备可以为可通过相邻域到达的至少一些目的地地址前缀分配两个不同的VPN标签值:用于FRR保护的业务的第一VPN标签值和用于非保护业务的第二VPN标签值。 在接收到包含受保护的VPN标签值的数据分组时,不允许备份边缘设备第二次重新路由该分组,例如响应于另一个域间节点或链路故障,从而防止循环在 网络。