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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Performance analysis of dedicated protection and shared protection for waveband switching based on multi-granularity optical cross-connect
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Performance analysis of dedicated protection and shared protection for waveband switching based on multi-granularity optical cross-connect

机译:基于多粒度光交叉连接的波段切换专用保护和共享保护性能分析

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摘要

In order to save the switching ports and the cost of Multi-Granularity Optical Cross-Connect (MG-OXC), the waveband switching technique was proposed to groom multiple wavelength-level traffic to a few waveband tunnels to be switched by a few switching ports in MG-OXC. At the same time, protection for fibers is very important to ensure the service continuity since each wavelength carries a lot of traffic. Although existing works have addressed the waveband switching protection, most of them separately considered only the dedicated protection or shared protection in static demand scenario and did not deeply analyze and compare the dedicated protection and shared protection in dynamic demand scenario. Therefore, in this paper, we deeply study the consumptions of wavelengths in fibers and ports in MG-OXCs for Waveband Shared Protection (WSP) and Waveband Dedicated Protection (WDP) in dynamic demand scenario, and propose the port-cost calculation and update methods based on a new waveband layered auxiliary graph that is developed based on MG-OXC structure. In simulations, we compare WSP, WDP, traditional end-to-end waveband shared protection and traditional end-to-end waveband dedicated protection. Simulation results show that the shared protection has smaller port-cost, better wavelength utilization efficiency and lower blocking probability than the dedicated protection with the same waveband switching policy, and the sub-path waveband switching has bigger port-cost, better wavelength utilization efficiency and lower blocking probability than the end-to-end waveband switching with the same backup wavelength assignment policy.
机译:为了节省交换端口和多粒度光交叉连接(MG-OXC)的成本,提出了一种波段交换技术,将多波长级业务分配给要由几个交换端口交换的几个波段隧道。在MG-OXC中。同时,保护光纤对于确保服务连续性非常重要,因为每个波长都承载大量流量。尽管现有的工作已经解决了波段切换保护问题,但它们中的大多数都单独考虑了静态需求场景中的专用保护或共享保护,而没有深入分析和比较动态需求场景中的专用保护和共享保护。因此,本文在动态需求场景下,深入研究了MG-OXC中用于波段共享保护(WSP)和波段专用保护(WDP)的光纤和端口的波长消耗,并提出了端口成本的计算和更新方法。基于基于MG-OXC结构开发的新的波段分层辅助图。在仿真中,我们比较了WSP,WDP,传统的端到端波段共享保护和传统的端到端波段专用保护。仿真结果表明,与采用相同波段切换策略的专用保护相比,共享保护具有更低的端口成本,更好的波长利用率和更低的阻塞概率;子路径波段切换具有更高的端口成本,更好的波长利用率和更高的波长利用率。与采用相同备用波长分配策略的端到端波段切换相比,更低的阻塞概率。

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