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Fast convergence with fast reroute in IP networks

机译:快速收敛在IP网络中快速重新路由

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It has been observed that even in well managed networks, failures of links and routers are not uncommon. In order to satisfy the demand for high availability in case of a failure, fast restoration of loop-free forwarding along the optimal paths is imperative for a routing scheme. Failures can be circumvented quickly with local rerouting but packets take potentially long detours. Global recomputation of new optimal routes incurs a convergence delay and can cause forwarding loops during convergence. Attempts to avoid transient loops may also increase the convergence delay. The recently proposed SafeGuard mechanism overcomes these problems, i.e., it is always loop-free, and minimizes disruption time and convergence delay. One drawback however, is that SafeGuard needs each packet to carry multiple-byte information about the path cost. We propose an alternative approach, fast convergence with fast reroute (FCFR), that employs a fast reroute scheme such as NotVia and needs just one additional bit in the packet header. We evaluate the performance of FCFR, and show that it performs comparably to SafeGuard, with much less per-packet overhead.
机译:已经观察到即使在核心网络中,链接和路由器的失败也不罕见。为了满足对失败的情况下对高可用性的需求,沿着最佳路径的无环转发的快速恢复是对路由方案的迫切性。通过当地的重新排出可以快速绕过故障,但数据包可能会持续长时间的绕道。新的最佳路由的全局重新计算会引发收敛延迟,并且可以在收敛过程中导致转发循环。避免瞬态环路的尝试也可能增加收敛延迟。最近提出的保障机制克服了这些问题,即,它始终是无循环的,并最大限度地减少中断时间和收敛延迟。然而,一个缺点是,保障需要每个数据包携带关于路径成本的多字节信息。我们提出了一种替代方法,快速收敛了快速的REROUTE(FCFR),它采用了快速的REROUTE方案,例如NOTVIA,并在数据包报头中仅需要一个附加位。我们评估FCFR的表现,并表明它相当于维护,每个数据包的开销都少得多。

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