Evaluation of segment-based crankback re-routing for GMPLS-based WSON

Edgard Jamhour, M. Penna
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引用次数: 1

Abstract

The successful creation of lightpaths depends on updated information about network resources, such as the availability of wavelengths in the links along a path and the capability of the nodes to perform wavelength conversion. If signaling is performed with outdated information, a setup request of a lightpath may fail by selecting a path with insufficient network resources. An important GMPLS addition to the RSVP-TE was the possibility of correcting lightpath setup requests using crankback. Crankback extensions permit a node that was unable to forward a setup request to return the blocking information to the upstream nodes. In the segment-based crankback, any of the upstream nodes may attempt to correct the signaling by rerouting the request through an alternate path. Such a strategy, however, is not advantageous for any network topology. In this paper, we evaluate eight different network topologies to determine which network features favor the crankback strategy. To perform our evaluation, we consider several network metrics, including some used in SNA (Social Network Analisys).
基于gmpls的WSON中基于分段的曲柄回转重路由的评估
光路的成功创建取决于有关网络资源的最新信息,例如沿路径的链路中波长的可用性以及节点执行波长转换的能力。如果使用过时的信息执行信令,则光路的设置请求可能会因选择网络资源不足的路径而失败。在RSVP-TE中,GMPLS增加了一个重要的功能,即使用曲柄回调修正光路设置请求的可能性。曲柄后退扩展允许无法转发设置请求的节点将阻塞信息返回给上游节点。在基于段的曲回程中,任何上游节点都可以尝试通过替代路径重新路由请求来纠正信令。然而,这种策略对任何网络拓扑都不是有利的。在本文中,我们评估了八种不同的网络拓扑结构,以确定哪种网络特征有利于曲背策略。为了执行我们的评估,我们考虑了几个网络指标,包括在SNA(社会网络分析)中使用的一些指标。
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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