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首页> 外文期刊>International Journal of Electronics, Computer and Communications Technologies >A Fast Recovery Technique for Multi-Point to Multi-Point MPLS tunnels
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A Fast Recovery Technique for Multi-Point to Multi-Point MPLS tunnels

机译:多点到多点MPLS隧道的快速恢复技术

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This paper proposes fast reroute extensions to RSVP-TE in order to support the protection of multipoint to multipoint (MP2MP) MPLS TE-tunnels. To protect an element (link or node) of a primary MP2MP TE-tunnel, we propose to use an MP2MP bypass TE-tunnel connecting a set of nodes around the protected element. During failure the primary MP2MP TE-tunnel is encapsulated into the MP2MP bypass TE-tunnel which calls for defining a new type of MPLS hierarchy, the multipoint to multipoint hierarchy. The node of the primary MP2MP TE-tunnel upstream to the protected element, called the Upstream Protecting Node (UPN), selects the MP2MP bypass TE-tunnel to be used for the protection. By extending the point to multipoint MPLS hierarchy, which relies on the upstream label assignment, we discuss several extensions scenarios depending on the number of leaves of a bypass TE-tunnel and on the number of UPNs per bypass tunnel. The scalability/bandwidth-consumption tradeoff between these schemes is analyzed by means of simulations. The proposed method can be efficiently used for the protection of point-to-point and point-to-multipoint TE-tunnels as well, as such tunnels are actually particular cases of MP2MP TE-tunnels
机译:本文提出了对RSVP-TE的快速重路由扩展,以支持对多点到多点(MP2MP)MPLS TE隧道的保护。为了保护主MP2MP TE隧道的元素(链接或节点),我们建议使用MP2MP旁路TE隧道,将受保护元素周围的一组节点连接起来。在故障期间,主MP2MP TE隧道被封装到MP2MP旁路TE隧道中,该隧道要求定义一种新的MPLS层次结构,即多点到多点层次结构。被保护元素上游的主MP2MP TE隧道的节点称为上游保护节点(UPN),它选择要用于保护的MP2MP旁路TE隧道。通过依靠上游标签分配将点扩展到多点MPLS层次结构,我们讨论了几种扩展方案,具体取决于旁路TE隧道的叶子数和每个旁路隧道的UPN数。通过仿真分析了这些方案之间的可伸缩性/带宽消耗权衡。所提出的方法也可以有效地用于点对点和点对多点TE隧道的保护,因为这种隧道实际上是MP2MP TE隧道的特例。

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