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LSP and /spl lambda/SP Setup in GMPLS Networks

机译:GMPLS网络中的LSP和/ spl lambda / SP设置

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摘要

In this paper, a new optimal policy is introduced to determine and adapt the generalized multiprotocol label switching (GMPLS) network topology based on the current traffic load. The integrated traffic engineering paradigm provides mechanisms for dynamic addition of physical capacity to optical networks. In the absence of such mechanisms, the rejection of incoming requests will be higher. The objective of the proposed policy is to minimize the costs involving bandwidth, switching and signaling. The policy is derived by utilizing the Markov decision process theory. The new policy is split into two levels: the MPLS network level and the optical network level. In addition to the optimal policy, a sub-optimal policy and a threshold-based policy are also proposed which are less computationally intensive but have comparable performance to the optimal policy. The proposed policies have been evaluated by simulation and compared to some heuristics. Numerical results, which show their effectiveness and the achieved performance improvement, are presented.
机译:本文提出了一种新的最优策略,用于根据当前流量负载确定和适应广义多协议标签交换(GMPLS)网络拓扑。集成的流量工程范式提供了向光网络动态增加物理容量的机制。在没有这种机制的情况下,对传入请求的拒绝将会更高。提出的策略的目的是使涉及带宽,交换和信令的成本最小化。该策略是通过利用马尔可夫决策过程理论得出的。新策略分为两个级别:MPLS网络级别和光网络级别。除了最优策略之外,还提出了次优策略和基于阈值的策略,它们的计算强度较低,但具有与最优策略相当的性能。拟议的策略已通过仿真进行了评估,并与一些启发式方法进行了比较。数值结果表明了它们的有效性和所取得的性能改进。

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