首页> 外文会议>Conference on OptiComm 2003: Optical Networking and Communications; Oct 13-17, 2003; Dallas, Texas, USA >A Hybrid Protection-Restoration Mechanism for Enhancing Dual-Failure Restorability in Optical Mesh-Restorable Networks
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A Hybrid Protection-Restoration Mechanism for Enhancing Dual-Failure Restorability in Optical Mesh-Restorable Networks

机译:光网可恢复网络中增强双故障可恢复性的混合保护-恢复机制

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In this paper, we investigate the problem of enhancing dual-failure restorability in path-protected mesh-restorable optical wavelength division multiplexed (WDM) networks. A key finding of recent studies that have demonstrated the need to survive simultaneous dual-link failures is that designs providing complete (i.e. 100%) protection from all dual-failures may need almost thrice the spare capacity compared to a system that protects against all single-link failures. However, it has also been shown that systems designed for 100% single-link failure protection can provide reasonable protection from dual-link failures. Thus, the motivation of this work is to develop a hybrid mechanism that provides maximum (close to 100%) dual-failure restorability with minimum additional spare capacity. The system architecture considered is a circuit-switched WDM network with dynamic arrival of sessions requests. We also consider sparse wavelength conversion, where only some nodes have converters. We propose an adaptive mechanism, which we term active protection, that builds upon a pro-active path protection to provide complete single-failure restorability and adds dynamic segment-based restoration. The objective is to optimize network survivability (and minimize spare capacity needs) with regard to dual-link failures while maintaining complete single-failure restorability. The basic premise of the algorithm is to identify scenarios in the dual-link failure model that necessitate additional spare capacity and provide protection for those scenarios only. Our findings indicate that the proposed scheme achieves close to complete (100%) dual-failure restorability with only maximum of 3% wavelength-links needing two backups even at high loads. Moreover, at moderate to high loads, our scheme attains close to 16% improvement over the base model that provides complete single-failure restorability.
机译:在本文中,我们研究了在路径保护的网格可恢复光波分复用(WDM)网络中增强双故障可恢复性的问题。最新研究的一个关键发现表明,必须同时存在双链路故障,而提供全面(即100%)保护以防止所有双故障的设计可能需要的备用容量几乎比防止所有单故障的系统高出三倍。 -链接失败。但是,也已经表明,专为100%单链路故障保护而设计的系统可以为双链路故障提供合理的保护。因此,这项工作的动机是开发一种混合机制,以最小的额外备用容量提供最大(接近100%)的双故障可恢复性。所考虑的系统架构是具有会话请求动态到达的电路交换WDM网络。我们还考虑了稀疏波长转换,其中只有一些节点具有转换器。我们提出一种自适应机制,我们称之为主动保护,该机制建立在主动路径保护的基础上,以提供完整的单故障可恢复性并添加基于动态分段的恢复。目的是针对双链路故障优化网络生存能力(并最大限度地减少备用容量需求),同时保持完整的单故障可恢复性。该算法的基本前提是识别双链路故障模型中需要额外备用容量的场景,并仅为这些场景提供保护。我们的发现表明,所提出的方案实现了接近完全的(100%)双故障可恢复性,即使在高负载下,最多也只有两个备份的3%波长链路。此外,在中等到高负载下,我们的方案比提供完整的单故障可恢复性的基本模型提高了近16%。

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