Cost-optimized dimensioning of translucent WDM networks with Mixed-Line-Rate spectrum-flexible channels

A. Eira, J. Pedro, J. Pires
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引用次数: 8

Abstract

In order for transport networks to cost-effectively provide higher capacity, it is expected that channel bit-rates beyond 100 Gb/s will be accomplished by resorting to a flexible WDM grid with variable channel spacing. Among the implications of this concept is the need for planning tools that fully exploit the additional degrees of freedom enabled by a flexible grid to further optimize network cost and spectral efficiency. This paper proposes an optimization framework to minimize the transponder and regenerator deployment cost in a translucent WDM network featuring channel bit-rates of 40, 100 and 400 Gb/s and multiple transmission formats per bit-rate, each characterized by its own spectral width, optical reach and cost properties. Firstly, we formulate the problem via a novel Integer Linear Programming (ILP) model, whose resolution finds the optimal (cheapest) feasible network configuration. Secondly, we propose an efficient heuristic called Narrowest First-Iterative Cost Reduction (NF-ICR) to handle network scenarios for which solving the ILP entails an unreasonable computational burden. The NF-ICR heuristic is shown to provide tight optimality bounds where the benchmark given by the ILP solution is attainable. For larger networks, we show that the use of a flexible grid and multiple format options for each bit-rate results in around 10% less cost in transponders and regenerators for metro networks, and a substantial increase in the total traffic load supported by the network. We also conclude that a distinction emerges between metro/regional scenarios and long-haul networks with long paths, wherein the shorter transparent reach of 400 Gb/s channels drives up the cost due to extra regeneration, favoring the use of parallelized solutions of lower bit-rate channels.
具有混合线速率频谱柔性信道的半透明WDM网络的成本优化尺寸
为了使传输网络能够经济有效地提供更高的容量,预计将通过采用具有可变信道间距的灵活WDM网格来实现超过100 Gb/s的信道比特率。这一概念的含义之一是需要规划工具,充分利用灵活电网带来的额外自由度,进一步优化网络成本和频谱效率。本文提出了一个优化框架,以最大限度地减少半透明WDM网络中转发器和再生器的部署成本,该网络具有40、100和400gb /s信道比特率,以及每比特率的多种传输格式,每种传输格式都有自己的频谱宽度、光覆盖范围和成本特性。首先,我们通过一种新颖的整数线性规划(ILP)模型来表达问题,该模型的求解找到最优(最便宜)的可行网络配置。其次,我们提出了一种称为最窄第一迭代成本缩减(NF-ICR)的有效启发式方法来处理求解ILP需要不合理计算负担的网络场景。在ILP解决方案给出的基准可以达到的情况下,NF-ICR启发式提供了严格的最优性边界。对于较大的网络,我们表明,为每个比特率使用灵活的网格和多种格式选项可使城域网络的转发器和再生器成本降低约10%,并且网络支持的总流量负载大幅增加。我们还得出结论,城域/区域场景和具有长路径的长途网络之间存在区别,其中400 Gb/s通道的较短透明到达由于额外的再生而导致成本上升,有利于使用低比特率通道的并行解决方案。
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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