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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Rapid and Efficient Protection for All-Optical WDM Mesh Networks
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Rapid and Efficient Protection for All-Optical WDM Mesh Networks

机译:全光WDM网状网络的快速有效保护

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Survivability becomes increasingly critical in managing high-speed networks as data traffic continues to grow in both size and importance. In addition, the impact of failures is exacerbated by the higher data rates available in optical networks. It is therefore imperative to address network survivability in an efficient manner in order to design and operate reliable networks. Transparent optical networks (TONs) provide several advantages over optically opaque networks for supporting the growing communication demands, but suffer from several drawbacks that reduce the efficacy of most applicable capacity-efficient survivability techniques. In this paper, we present a protection algorithm (for single link and/or node failures) called Streams. Streams protection is identical to 1:1 dedicated path protection in terms of recovery speed, but requires significantly less capacity. We study both online non-dynamic routing as well as (online) dynamic provisioning scenarios to compare Streams with dedicated and shared path protection in terms of capacity, blocking probability, path lengths, and recovery time/data loss, and report the relative tradeoffs between the different protection schemes in detail. Our results show that our simple heuristic for Streams under online provisioning scenarios offer attractive tradeoffs in terms of blocking, recovery speed, data loss and implementation overhead. We also briefly cover simple ILP solutions to address static offline routing problems, and show that the Streams protection scheme is also efficient under offline routing scenarios as well.
机译:随着数据流量的大小和重要性持续增长,生存能力在管理高速网络中变得越来越重要。此外,光网络中可用的更高数据速率加剧了故障的影响。因此,必须以有效的方式解决网络的生存能力,以设计和运行可靠的网络。透明光网络(TONs)与不透明网络相比,在支持不断增长的通信需求方面具有多个优势,但存在一些缺点,这些缺点降低了大多数适用的容量有效的生存能力技术的功效。在本文中,我们提出了一种称为流的保护算法(针对单链路和/或节点故障)。就恢复速度而言,流保护与1:1专用路径保护相同,但所需容量却大大减少。我们研究了在线非动态路由以及(在线)动态配置方案,以在容量,阻塞概率,路径长度和恢复时间/数据丢失方面比较具有专用和共享路径保护的流,并报告之间的相对权衡。详细介绍不同的保护方案。我们的结果表明,我们在在线资源调配方案下对Streams的简单启发式在阻塞,恢复速度,数据丢失和实现开销方面提供了有吸引力的权衡。我们还简要介绍了用于解决静态脱机路由问题的简单ILP解决方案,并显示了Streams保护方案在脱机路由方案下也很有效。

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