Extending node protection concept of p-cycles for an efficient resource utilization in multicast traffic

A. Frikha, Bernard A. Cousin, S. Lahoud
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引用次数: 9

Abstract

In this paper, we consider link-and-node failure recovery in dynamic multicast traffic in WDM networks. We extend the node protection concept of the p-cycle approach to achieve more efficient resource utilization. Then, we propose a novel algorithm that integrates our concept for the node protection, named node-and-link protecting p-cycle based algorithm (NPC). We also propose a second algorithm, named node-and-link protecting candidate p-cycle based algorithm (NPCC). This algorithm deploys our concept for node protection and relies on a candidate p-cycle set to speed up the computational time. We compare our proposed algorithms to the ESHN algorithm, which is reported to be the most efficient algorithm for protecting dynamic multicast sessions. Extensive simulations show that the NPC algorithm achieves the lowest blocking probability, but has the highest computational time among the NPCC and ESHN algorithms. The NPCC algorithm outperforms the ESHN algorithm in terms of resource utilization efficiency and computational time.
扩展p-环的节点保护概念,以提高组播流量的资源利用率
本文研究了WDM网络中动态组播业务的链路节点故障恢复问题。我们扩展了p循环方法的节点保护概念,以实现更有效的资源利用。然后,我们提出了一种新的节点保护算法,称为基于节点和链路保护p-cycle的算法(NPC)。我们还提出了第二种算法,称为基于节点和链路保护的候选p环算法(NPCC)。该算法部署了我们的节点保护概念,并依赖于候选p-cycle集来加快计算时间。我们将我们提出的算法与ESHN算法进行了比较,ESHN算法被认为是保护动态组播会话最有效的算法。大量的仿真结果表明,在NPCC算法和ESHN算法中,NPC算法获得的阻塞概率最低,但计算时间最长。NPCC算法在资源利用效率和计算时间方面优于ESHN算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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