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A Study of IP Routing Stability for GMPLS-Based Next-Generation Backbone Network

机译:基于GMPLS的下一代骨干网IP路由稳定性的研究

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摘要

GMPLS (Generalized Multi-Protocol Label Switching) is considered promising as the basic technology for forming the next-generation ISP (Internet Service Provider) backbone network. In an IP backbone network based on GMPLS, the optical layer and the packet layer are vertically integrated and operate in close collaboration. It is due to this collaborative operation of multiple layers that integrated network control such as path setting in the optical layer according to the IP traffic in the packet layer and fast recovery from faults is realized. However, there is a danger, due to the similarity of functions in the two layers or to mismatch of the parameters, that collaborative operation between layers may affect the stability of IP routing in the packet layer. This situation is mostly due to the fact that the time granularity in the change of path state in the optical layer is finer than that of the IP routing protocol processing in the packet layer. This paper discusses route stability in the packet layer during collaborative operation of layers. The situation is analyzed by simulation and a method of improving stability is proposed.
机译:GMPLS(通用多协议标签交换)被认为有希望成为形成下一代ISP(互联网服务提供商)骨干网的基本技术。在基于GMPLS的IP骨干网中,光层和分组层是垂直集成的,并且紧密协作。由于多层的这种协作操作,实现了集成网络控制,例如根据数据包层中的IP流量在光层中设置路径,并实现了从故障中的快速恢复。但是,由于两层功能的相似性或参数的不匹配,存在层之间的协作操作可能会影响数据包层中IP路由稳定性的危险。这种情况主要是由于以下事实:光学层中路径状态变化的时间粒度比数据包层中IP路由协议处理的时间粒度更精细。本文讨论了在各层协同操作期间数据包层中的路由稳定性。通过仿真分析了这种情况,并提出了一种提高稳定性的方法。

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