Optimizing Network Routing to Minimize Congestion, Using the Conqueror Traffic Based Synthetically Generated Traffic Matrices

S. Zargar, M. Moghaddam
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引用次数: 0

Abstract

Many traffic engineering and network design tasks require a network-wide description as an input for their performance evaluation. Therefore, a traffic matrix represents the demands for these tasks and is applicable to them. Traffic matrix can be measured directly or estimated from an indirect data. Generating synthetic traffic matrix method, is a better way to achieve traffic matrix indirectly. We have previously proposed the conqueror traffic based synthetic traffic matrix and we have indicated that our conqueror traffic based matrix performed better in all cases where conqueror traffic existed. In this paper by measuring the maximum link-utilization, we consider how well the conqueror traffic based synthetic matrix optimizes the specific traffic engineering task; that is optimizing network routing to minimize congestion. First, we optimize the routing with the conqueror traffic based synthetic matrix to minimize congestion. Then, we test the performance of the resulting routing on the real traffic matrix. Simulation results indicate that OSPF optimization which we use in this paper to optimize the weights based on the conqueror traffic based synthetic matrix, optimize the routing better and result in a better performance on real traffic matrix.
基于综合生成流量矩阵的征服者流量优化网络路由以最小化拥塞
许多流量工程和网络设计任务需要一个全网描述作为其性能评估的输入。因此,流量矩阵代表了这些任务的需求,并适用于这些任务。流量矩阵可以直接测量,也可以通过间接数据估算。生成综合交通矩阵的方法,是间接实现交通矩阵的较好方法。我们之前已经提出了基于征服者流量的综合流量矩阵,并且我们已经表明我们的基于征服者流量的矩阵在存在征服者流量的所有情况下都表现得更好。本文通过度量最大链路利用率来考虑基于征服者流量的综合矩阵对具体交通工程任务的优化程度;这就是优化网络路由以最小化拥塞。首先,利用基于征服者流量的综合矩阵对路由进行优化,使拥塞最小化。然后,我们在真实流量矩阵上测试所得路由的性能。仿真结果表明,本文采用的OSPF优化方法在基于征服者流量的综合矩阵上优化权值,可以更好地优化路由,在实际流量矩阵上具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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