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A novel path protection scheme for MPLS networks using multi-path routing

机译:一种使用多路径路由的MPLS网络新型路径保护方案

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Multi-protocol label switching (MPLS) is an evolving network technology that is used to provide traffic engineering (TE) and high speed networking. Internet service providers, which support MPLS technology, are increasingly demanded to provide high quality of service (QoS) guarantees. One of the aspects of QoS is fault tolerance. It is defined as the property of a system to continue operating in the event of failure of some of its parts. Fault tolerance techniques are very useful to maintain the survivability of the network by recovering from failure within acceptable delay and minimum packet loss while efficiently utilizing network resources.rnIn this paper, we propose a novel approach for fault tolerance in MPLS networks. Our approach uses a modified (k, n) threshold sharing scheme with multi-path routing. An IP packet entering MPLS network is partitioned into n MPLS packets, which are assigned to node/link disjoint LSPs across the MPLS network. Receiving MPLS packets from k out of n LSPs are sufficient to reconstruct the original IP packet. The approach introduces no packet loss and no recovery delay while requiring reasonable redundant bandwidth. In addition, it can easily handle single and multiple path failures.
机译:多协议标签交换(MPLS)是一种不断发展的网络技术,用于提供流量工程(TE)和高速网络。越来越需要支持MPLS技术的Internet服务提供商来提供高质量的服务(QoS)保证。 QoS的方面之一是容错能力。它被定义为系统的某些部分发生故障时可以继续运行的属性。容错技术对于在有效利用网络资源的同时在可接受的延迟和最小的数据包丢失范围内从故障中恢复,对于维持网络的可生存性非常有用。本文提出了一种用于MPLS网络的新型容错方法。我们的方法使用经过修改的(k,n)阈值共享方案和多路径路由。进入MPLS网络的IP数据包被划分为n个MPLS数据包,这些MPLS数据包被分配给MPLS网络上的节点/链路不相交LSP。从n个LSP中的k个LSP接收MPLS数据包足以重建原始IP数据包。该方法不会导致丢包和恢复延迟,同时需要合理的冗余带宽。此外,它可以轻松处理单路径和多路径故障。

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