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引用次数: 7
摘要
互联网对带宽的需求与日俱增。波分复用(WDM)是利用光纤功能的下一步,特别是对于广域骨干网。重构是WDM光网络的一个特点,它允许网络运营商根据不断变化的业务需求来安排网络。重构研究的一般假设是基于重构决策是突然的,即由一个事件触发,因此虚拟拓扑变化是一个中断的过程。它有两个目标:寻找满足波长分配约束的路由和有效利用网络资源。网络所涉及的复杂性可能需要考虑多个约束来做出决策。本文提出了一种利用模糊逻辑控制对IP over WDM网络进行虚拟拓扑重新配置的新方法,该方法允许以简单直观的方式考虑多个约束。用删除光路数量和每个波长的平均利用率的五个模糊集来划分变量空间:非常高(VH)、高(H)、中(M)、低(L)、非常低(VL)。仿真结果表明,该模糊重构算法是有效的,具有良好的应用前景。
Virtual topology reconfiguration of WDM optical networks using fuzzy logic control
Bandwidth requirements of the Internet are increasing every day. Wavelength division multiplexing (WDM) is the next step towards leveraging the capabilities of the optical fiber, especially for wide area backbone networks. Reconfiguration is a characteristic of WDM optical networks that allows network operators to arrange the networks in response to the changing traffic demands. As a general assumption, reconfiguration studies are based on the idea that the decision of reconfiguration is sudden, i.e. triggered by an event, hence the virtual topology change is an interrupted process. It has two objectives: finding routes that satisfy the wavelength assignment constraints, and making efficient use of network resources. The complexity involved in the networks may require the consideration of multiple constraints to make the decision. In this paper we proposed a new approach using fuzzy logic control on IP over WDM network to reconfigure virtual topology that allows multiple constraints to be considered in a simple and intuitive way. Five fuzzy sets for the number of deleted lightpaths and average utilization for each wavelength are used to divide the variable space: very high(VH), high(H), medium(M), low(L), very low(VL). Simulation shows that this fuzzy reconfiguration algorithm is efficient and promising.