Electrical optical network RWA algorithm based on prediction and layered graph model

Tang Liang-rui, Lou Jia, He Yuan
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引用次数: 1

Abstract

In the electrical power system, there is a wide range of communication services and service needs, and the realization of differentiated services of different types is quite necessary. Thus, based on the combination of characters and requirements of electric power communication business, this paper makes an argument for a routing and wavelength assignment algorithm based on prediction and layered graph model (PLGMRWA). Through the wavelength number prediction mechanism, it realizes the distribution of wavelength resource according to the needs, and uses the layered graph model to wholly solve the problems of route and wavelength assignment in comprehensive considerations of hops and the usage of wavelength. The simulation results indicate that, algorithm PLGMRWA has advantages of blocking capacity and wavelength resource utilization over algorithms GWAS (Grouped wavelength assignment strategy) and DPWA (Dynamic and priority-based wavelength assignment algorithm) for all levels of business in electrical power communication network.
基于预测和分层图模型的电光网络RWA算法
在电力系统中,存在着广泛的通信业务和服务需求,实现不同类型的差异化服务是十分必要的。因此,本文结合电力通信业务的特点和需求,提出了一种基于预测和分层图模型的路由和波长分配算法(PLGMRWA)。通过波长数预测机制,实现了波长资源的按需分配,并采用分层图模型,在综合考虑跳数和波长使用的情况下,整体解决了路由和波长分配问题。仿真结果表明,相对于分组波长分配策略(GWAS)和基于优先级的动态波长分配算法(DPWA), PLGMRWA算法在阻塞容量和波长资源利用率方面具有优势,适用于电力通信网的各级业务。
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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