Energy-Aware Two Link-Disjoint Paths Routing

Gongqi Lin, S. Soh, M. Lazarescu, Kwan-Wu Chin
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引用次数: 4

Abstract

Network robustness and throughput can be improved by routing each source-to-terminal (s, t) demand via two link-disjoint paths (TLDP). However, the use of TLDP incurs higher energy cost. Henceforth, we address the problem of minimizing the energy usage of networks that use TLDP. Specifically, our problem is to maximally switch off redundant network links while maintaining at least 0≤T≤100% of (s, t) TLDP in the network, for a given T, and limiting the maximum link utilization (MLU) to no greater than a configured threshold. To address this problem, we present a fast heuristic, called TLDP by Shortest Path First (TLDP-SPF), and extensively evaluate its performance on both real and/or synthetic topologies and traffic demands. Our simulation results show that TLDP-SPF can reduce network energy usage, on average, by more than 20%, even for MLU below 50%. As compared to using Shortest Path routing, while reducing energy by about 20%, TLDP-SPF does not significantly affect (s, t) path length, even for MLU<;50%.
能量感知的两条链路不相交路径路由
通过两个链路分离路径(TLDP)路由每个源到终端(s, t)需求,可以提高网络健壮性和吞吐量。然而,使用TLDP会产生较高的能源成本。因此,我们将解决使用TLDP的网络能耗最小化的问题。具体来说,我们的问题是最大限度地关闭冗余网络链路,同时保持网络中(s, T) TLDP的至少0≤T≤100%,对于给定的T,并将最大链路利用率(MLU)限制在不大于配置的阈值。为了解决这个问题,我们提出了一种快速的启发式方法,称为最短路径优先的TLDP (TLDP- spf),并广泛评估了其在真实和/或合成拓扑和流量需求上的性能。我们的仿真结果表明,即使MLU低于50%,TLDP-SPF也可以平均降低20%以上的网络能耗。与使用最短路径路由相比,虽然减少了约20%的能量,但TLDP-SPF对(s, t)路径长度没有显著影响,即使MLU<;50%。
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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