共享网格恢复:仿真研究

M. Goyal, G. Li, J. Yates
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引用次数: 30

摘要

只提供摘要形式。在光网络中引入交叉连接(XCs)使我们有机会快速提供高带宽连接。这些连接通常用于传输关键的客户数据。因此,连接可靠性成为运营商及其客户的主要关注点。我们研究了XC架构的可扩展性和用于快速恢复的共享网格恢复信令方案。主要发现是:1。对于每个节点的交叉连接时间都很长的交叉连接来说,顺序处理交叉连接请求是非常不可取的;和2。只有在交叉连接完成后才进行消息转发的争用解决方案(例如当前通用多协议标签交换(GMPLS)提案中使用的那些方案)与争用避免方案相比,恢复速度要慢得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shared mesh restoration: a simulation study
Summary form only given. The introduction of cross-connects (XCs) into optical networks grants us the opportunity to rapidly provision high bandwidth connections. These connections are generally used to carry critical customer data. As such, connection reliability becomes a major concern for both carriers and their customers. We investigated the scalability of XC architectures and shared-mesh restoration signaling schemes for rapid restoration. The key findings are that: 1. Sequential processing of cross-connect requests is highly undesirable for cross-connects with significant per-node cross-connect times; and 2. Contention resolution schemes with message forwarding only after cross-connection completion (such as those used within current generalized-multi protocol label switching (GMPLS) proposals) provides significantly slower restoration as compared with contention avoidance schemes.
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