Wavebanding in Bi-Directional WDM Ring Networks with Limited Reconfigurability

M. Alnaimi, S. Subramaniam
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Abstract

An important factor that affects the cost of WDM networks is the number of wavelengths to be added/dropped by reconfigurable optical add drop multiplexers (ROADMs). Limiting the range of wavelengths that can be accessed at a node reduces costs. In this paper, we study wavelength assignment (WA) in WDM bi-directional ring networks with limited reconfigurability and take up the problem of supporting two traffic types - permutation traffic and all-to-all traffic - while minimizing the worst-case wavelength range of the ROADMs and respecting the wavelength termination and continuity constraints. ROADMs can be limited in tuning range (L-ROADMs) or have full range (F- ROADMs). In this work, a node can either possess a limited-add L-ROADM or an F-ROADM. For permutation traffic, we show that at least one F-ROADM is necessary, and we also give an upper bound on the number of F-ROADMs needed as a function of the range of L-ROADMs at other nodes. For all-to-all traffic, we develop an integer linear programming (ILP) formulation, and also propose a new wavelength assignment algorithm that uses Wu = N2/4 - N/2 + 1/4 wavelengths. Our heuristic's results are similar to the ILP's. The results show that a saving of 85-93.3% in tuning range is achievable for this type of traffic.
具有有限可重构性的双向WDM环形网络中的波带
影响WDM网络成本的一个重要因素是可重构光加丢复用器(roadm)要添加/丢弃的波长数量。限制节点可以访问的波长范围可以降低成本。本文研究了可重构性有限的WDM双向环形网络中的波长分配(WA)问题,讨论了在最小化roadm的最坏波长范围并尊重波长终止和连续性约束的情况下,支持两种业务类型(置换业务和全对全业务)的问题。roadm可以限制调谐范围(l - roadm)或具有全范围(F- roadm)。在此工作中,节点可以拥有有限添加的L-ROADM或F-ROADM。对于置换交通,我们证明了至少需要一个F-ROADM,并且我们还给出了所需F-ROADM数量的上界,作为其他节点上l - roadm范围的函数。对于所有流量,我们开发了一个整数线性规划(ILP)公式,并提出了一个新的波长分配算法,该算法使用Wu = N2/4 - N/2 + 1/4波长。我们的启发式结果与ILP相似。结果表明,对于这种类型的流量,调优范围可以节省85-93.3%。
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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