Single and multipath logical topology design and traffic grooming algorithm in IP over WDM networks

Kwangil Lee, M. Shayman
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引用次数: 4

Abstract

In this paper we investigate single- and multipath logical topology design and traffic grooming algorithms. Since the problem of the optimal logical topology design for all traffic demands is NP-complete, we design a logical topology by sequentially constructing the shortest path for one source-destination pair at a time. In the single path case, the demand for each source-destination pair must be routed on a single path. In the multipath case, if it is not feasible to route a demand on a single path, the traffic demand is divided into multiple subdemands and a path is provided for each subdemand. Each path is a locally optimized path in the sense that there are no other paths with less hop count that may be constructed from existing links and newly created links. We propose heuristic algorithms for logical topology design and traffic grooming in both the single path and multipath cases. The performance of these algorithms in terms of weighted hop count and throughput is evaluated using the GLASS/SSF simulator. The results indicate that a proposed single path algorithm outperforms other known algorithms in terms of weighted hop count and throughput. Also, we observed that multipath algorithms improve network throughput and a multipath algorithm with widest-shortest paths reduces the weighted hop count compared to single path algorithms.
IP over WDM网络中单路和多路逻辑拓扑设计及流量疏导算法
在本文中,我们研究了单路径和多路径逻辑拓扑设计和流量疏导算法。由于所有流量需求的最优逻辑拓扑设计问题是np完全的,我们通过依次构建一次一个源-目的对的最短路径来设计逻辑拓扑。在单路径情况下,每个源-目的对的需求必须在单个路径上路由。在多路径的情况下,如果不能在单一路径上路由需求,则将流量需求分为多个子需求,并为每个子需求提供一条路径。每条路径都是局部优化路径,也就是说,不存在从现有链路和新创建的链路中可以构造出跳数更少的其他路径。在单路径和多路径情况下,我们提出了逻辑拓扑设计和流量疏导的启发式算法。这些算法在加权跳数和吞吐量方面的性能使用GLASS/SSF模拟器进行评估。结果表明,所提出的单路径算法在加权跳数和吞吐量方面优于其他已知算法。此外,我们观察到多路径算法提高了网络吞吐量,与单路径算法相比,具有最宽最短路径的多路径算法减少了加权跳数。
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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