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Traffic engineering with OSPF-TE and RSVP-TE: Flooding reduction techniques and evaluation of processing cost

机译:使用OSPF-TE和RSVP-TE进行流量工程:减少洪泛技术和评估处理成本

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摘要

This paper considers two important aspects related to the control plane of Traffic Engineered IP/MPLS networks: the "flooding reduction" mechanisms and the evaluation of processing cost for signaling and routing protocols. The flooding reduction mechanisms are needed to reduce the amount of information exchanged by Traffic Engineering enabled routing protocols. The trade-offbetween the amount of information exchanged and the network performance (connection blocking probability) is discussed in the light of specific aspects of OSPF-TE routing protocol and RSVP-TE signaling protocol. Different mechanisms are analyzed and a suggestion is given for the best one. The dynamic aspects related to the time needed to distribute the routing and signaling information are considered. Finally, the combined processing cost of routing and signaling is analyzed, and the possible bottlenecks of the architecture are discussed. It is worth mentioning that the discussed results have been derived not only with simulation/analysis but also with measurements coming from a testbed implementation.
机译:本文考虑了与流量工程IP / MPLS网络的控制平面相关的两个重要方面:“泛洪减少”机制以及对信令和路由协议的处理成本的评估。需要减少泛洪的机制来减少由启用流量工程的路由协议交换的信息量。根据OSPF-TE路由协议和RSVP-TE信令协议的特定方面,讨论了信息交换量与网络性能(连接阻塞概率)之间的取舍。分析了不同的机制,并提出了最佳机制的建议。考虑与分配路由和信令信息所需时间有关的动态方面。最后,分析了路由和信令的综合处理成本,并讨论了该体系结构的可能瓶颈。值得一提的是,讨论的结果不仅是通过仿真/分析得出的,而且还来自于测试平台实现的测量结果。

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