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Fast network re-optimization schemes for MPLS and optical networks

机译:MPLS和光网络的快速网络重新优化方案

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This paper presents algorithms for re-optimizing network routing in connection-oriented networks such as Multi-Protocol Label Switched (MPLS) networks. The objective in re-optimization is to allow the network to carry more traffic without adding capacity. The need for re-optimization arises because of dynamic connection routing where connections, such as bandwidth guaranteed Label Switched Paths (LSPs) in MPLS networks, are routed as they arrive one-by-one to the network. Continual dynamic routing leads to network inefficiencies due to the limited information available for routing and due to simple path selection algorithms often used to satisfy connection set-up time constraints. We present a re-optimization scheme, where the re-optimizer constantly monitors the network to determine if re-optimization will lead to sufficient network efficiency benefits. When sufficient benefits can be obtained, the re-optimizer computes the least cost set of connections which must be re-routed to attain the necessary network efficiency and then computes the routes for the connections to be re-routed. We develop efficient re-optimization algorithms and demonstrate by simulations that several network performance metrics are significantly improved by re-optimization.
机译:本文提出了用于在面向连接的网络(如多协议标签交换(MPLS)网络)中重新优化网络路由的算法。重新优化的目的是允许网络在不增加容量的情况下承载更多流量。对重新优化的需求是由于动态连接路由而产生的,其中,诸如MPLS网络中带宽保证的标签交换路径(LSP)之类的连接在它们一一到达网络时就被路由。由于可用于路由的信息有限,并且由于通常用于满足连接建立时间约束的简单路径选择算法,连续的动态路由会导致网络效率低下。我们提出了一种重新优化方案,其中重新优化器不断监视网络,以确定重新优化是否会带来足够的网络效率收益。当可以获得足够的收益时,重新优化器将计算必须重新布线以达到必要的网络效率所需的连接成本最低的一组,然后计算要重新布线的连接的路线。我们开发了有效的重新优化算法,并通过仿真证明了通过重新优化可以显着改善几个网络性能指标。

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