PIM-DM在IP快速路由中的应用

J. Papán, P. Segec, P. Paluch
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引用次数: 5

摘要

网络节点或链路故障后,会导致一段不可预测的时间内网络通信中断。这段时间包括网络重新收敛到新的最短路径所需的时间。这个过程可能持续几毫秒到几十秒。该时间在很大程度上取决于物理拓扑和所使用的路由协议。在故障和重新汇聚期间,网络会遇到严重的连通性问题,不同的目的地可能无法到达,从而导致其他困难,例如关键和敏感的服务。为了解决这些问题,IP快速路由(IP FRR)机制已经被开发出来。IPFRR机制的主要目标是通过在可能的节点或链路故障发生之前计算修复路径来最小化网络恢复时间。存在几种IPFR机制,从选择无环路的替代方案到使用隧道机制的其他方案。本文提出了一种新的基于组播的IPv6网络IPFRR恢复机制。我们提出的机制使用了一种改进的反向路径转发(RPF)控制算法,该算法用于协议独立组播-密集模式(PIM-DM)组播路由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of PIM-DM in IP fast reroute
After a network node or a link fails, an unpredictable period of time ensues during which the network communication is disturbed. This period encompasses the time necessary for the network to reconverge on new shortest paths. This process may last from a few miliseconds up to tens of seconds. The time heavily depends on the physical topology and the routing protocol used. During the failure and reconvergence period, the network is experiencing serious connectivity issues in which different destinations may become unreachable causing other difficulties, e.g. with critical and sensitive services. Addressing these issues, IP Fast ReRoute (IP FRR) mechanisms have been developed. The main goal of IPFRR mechanisms is to minimize network recovery time by computing repair paths for possible node or link failures before they happen. Several IPFR mechanisms exist, ranging from selecting loop-free alternatives to other ones using tunneling mechanisms. In this paper we are proposing a new multicast based mechanism for IPFRR recovery in an IPv6 network. Our proposed mechanism uses a modified algorithm of the Reverse Path Forwarding (RPF) control used by Protocol Independent Multicast - Dense Mode (PIM-DM) multicast routing.
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