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Static Routing and Wavelength Assignment for Multicast Advance Reservation in All-Optical Wavelength-Routed WDM Networks

机译:全光波长路由WDM网络中用于组播提前保留的静态路由和波长分配

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摘要

In this paper, we investigate the static multicast advance reservation (MCAR) problem for all-optical wavelength-routed WDM networks. Under the advanced reservation traffic model, connection requests specify their start time to be some time in the future and also specify their holding times. We investigate the static MCAR problem where the set of advance reservation requests is known ahead of time. We prove the MCAR problem is NP-complete, formulate the problem mathematically as an integer linear program (ILP), and develop three efficient heuristics, seqRWA, ISH, and SA, to solve the problem for practical size networks. We also introduce a theoretical lower bound on the number of wavelengths required. To evaluate our heuristics, we first compare their performances to the ILP for small networks, and then simulate them over real-world, large-scale networks. We find the SA heuristic provides close to optimal results compared to the ILP for our smaller networks, and up to a 33% improvement over seqRWA and up to a 22% improvement over ISH on realistic networks. SA provides, on average, solutions 1.5–1.8 times the cost given by our conservative lower bound on large networks.
机译:在本文中,我们研究了全光波长路由WDM网络的静态多播提前保留(MCAR)问题。在高级预留流量模型下,连接请求将其开始时间指定为将来的某个时间,还指定其保留时间。我们调查了静态MCAR问题,在该问题中提前知道了一组提前预订请求。我们证明了MCAR问题是NP完全的,将问题数学表达为整数线性程序(ILP),并开发了三种有效的启发式算法seqRWA,ISH和SA,以解决实际规模网络的问题。我们还介绍了所需波长数的理论下限。为了评估我们的启发式方法,我们首先将其性能与小型网络的ILP进行比较,然后在实际的大型网络中对其进行仿真。对于较小的网络,我们发现与ILP相比,SA启发式方法提供了接近最佳的结果,在实际网络中,与seqRWA相比,最高可提高33%,与ISH相比,最高可提高22%。 SA提供的解决方案平均成本是我们在大型网络上保守的下限所提供成本的1.5–1.8倍。

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