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Blocking Probability in All-Optical WDM Network Using IMCA

机译:使用IMCA的全光WDM网络中的阻塞概率

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The analysis of WDM (Wavelength-Division Multiplexing) optical network is essential to have the routed wavelength blocking probability with the conversion of wavelength using techniques. In this paper, an enhanced analytical model is proposed to evaluate the blocking performances in topology network and to improve the performances of reduction of blocking probability. The variation of probability is based on the wavelength and load used in the network. The conversion is carried out with the support of optical backbone of the inherent flexibility of the network using the proposed IMCA in Sparse-Partial Wavelength Conversion (SPWC) architecture. It reduces the number of converters significantly with efficient process and provides placement scheme of wavelength converters in the network. The proposed model utilizes the network with the assignment and routing of wavelength using dynamic process of assignment algorithm. The proposed model provides dynamic and static routing process with the range limit to have a minimum conversion for the same probabilities of blocking. The proposed system analysis and the simulation results show the better performances in faster coverage, minimum number of conversions, blocking probability improvement for high load.
机译:WDM(波分复用)​​光网络的分析对于通过技术转换波长来获得路由的波长阻塞概率至关重要。本文提出了一种增强的分析模型来评估拓扑网络中的阻塞性能,并提高降低阻塞概率的性能。概率的变化取决于网络中使用的波长和负载。使用提议的IMCA稀疏部分波长转换(SPWC)体系结构,在网络固有灵活性的光骨干网的支持下进行转换。通过有效的处理,它大大减少了转换器的数量,并提供了网络中波长转换器的放置方案。所提出的模型利用网络通过波长分配和动态路由算法分配波长。所提出的模型提供了具有范围限制的动态和静态路由过程,以在具有相同阻塞概率的情况下具有最小的转换。所提出的系统分析和仿真结果表明,在更快的覆盖范围,最少的转换次数,高负载的阻塞概率方面,性能更好。

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