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首页> 外文期刊>IEEE Transactions on Communications >Dependency-based analytical model for computing connection blocking rates and its application in the sparse placement of optical converters
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Dependency-based analytical model for computing connection blocking rates and its application in the sparse placement of optical converters

机译:用于计算连接阻塞率的基于依赖关系的分析模型及其在光转换器稀疏放置中的应用

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In this paper, we present a new analytical model that captures link dependencies in all-optical wavelength-division multiplexing (WDM) networks under uniform traffic and enables the estimation of connection-blocking probabilities more accurately than previously possible. The basic formula of the dependency between two links in this model reflects their degree of adjacency, the degree of connectivity of the nodes composing them, and their carried traffic. Our validation tests have shown that the analytical dependency model gives accurate results and successfully captures the main dependency characteristics observed in the simulation measurements. The usefulness of the model is illustrated by showing how to use it in enhancing a simulation-based algorithm that we recently proposed for the sparse placement of full wavelength converters in WDM networks. To analytically handle the presence of wavelength converters, a lightpath containing converters is divided into smaller subpaths, such that each subpath is a wavelength-continuous path, and the nodes shared between these subpaths are full wavelength-conversion-capable. The blocking probability of the entire path is obtained by computing the probabilities in the individual subpaths. We validate the analytically-based sparse placement algorithm by comparing it with its simulation-based counterpart using a number of network topologies.
机译:在本文中,我们提出了一种新的分析模型,该模型可以在统一流量下捕获全光波分复用(WDM)网络中的链路依存关系,并能够比以前更准确地估计连接阻塞的概率。该模型中两个链接之间的依赖关系的基本公式反映了它们的邻接程度,组成它们的节点的连接程度以及它们承载的流量。我们的验证测试表明,解析依赖性模型可以提供准确的结果,并成功捕获了在模拟测量中观察到的主要依赖性特征。通过展示如何在增强基于仿真的算法中使用该模型来说明该模型的有效性,该算法是我们最近提出的在WDM网络中稀疏放置全波长转换器的方法。为了分析地处理波长转换器的存在,将包含转换器的光路划分为较小的子路径,以使每个子路径为波长连续的路径,并且在这些子路径之间共享的节点具有完整的波长转换能力。通过计算各个子路径中的概率来获得整个路径的阻塞概率。我们通过将其与使用多种网络拓扑的基于仿真的对等算法进行比较,来验证基于分析的稀疏布局算法。

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