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A New Shared Segment Protection Method for Survivable Networks with Guaranteed Recovery Time

机译:具有恢复时间保证的可生存网络的新型共享网段保护方法

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Shared Segment Protection (SSP), compared with Shared Path Protection (SPP), and Shared Link Protection (SLP), provides an optimal protection configuration due to the ability of maximizing spare capacity sharing, and reducing the restoration time in cases of a single link failure. This paper provides a thorough study on SSP under the GMPLS-based recovery framework, where an effective survivable routing algorithm for SSP is proposed. The tradeoff between the price (i.e., cost representing the amount of resources, and the blocking probability), and the restoration time is extensively studied by simulations on three networks with highly dynamic traffic. We demonstrate that the proposed survivable routing algorithm can be a powerful solution for meeting stringent delay upper bounds for achieving high restorability of transport services. This can significantly improve the network reliability, and enable more advanced, mission critical services in the networks. The comparison among the three protection types further verifies that the proposed scheme can yield significant advantages over Shared Path Protection, and Shared Link Protection.
机译:与共享路径保护(SPP)和共享链路保护(SLP)相比,共享段保护(SSP)提供了最佳的保护配置,这是因为它具有最大化备用容量共享的能力,并减少了单链路情况下的恢复时间失败。本文在基于GMPLS的恢复框架下,对SSP进行了深入研究,提出了一种有效的SSP可生存路由算法。价格(即代表资源数量的成本和阻塞概率)与恢复时间之间的权衡关系是通过对三个具有高动态流量的网络进行仿真来广泛研究的。我们证明了所提出的可生存路由算法可以是满足严格的延迟上限以实现运输服务的高可恢复性的强大解决方案。这可以显着提高网络可靠性,并在网络中启用更高级的关键任务服务。三种保护类型之间的比较进一步证明,与共享路径保护和共享链路保护相比,该方案可以产生明显的优势。

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