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Multipath Routing from a Traffic Engineering Perspective: How Beneficial Is It?

机译:从流量工程角度看多路径路由:它有多大好处?

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Multipath routing gives traffic demands an opportunity to use multiple paths through a network. In a single-demand situation, its benefits are easy to see. In a multi-commodity case, when potentially all node-pairs (demands) generate traffic, they compete for the same network resources. In this work, we consider multipath routing in communication networks in a multi-commodity setting from a traffic engineering perspective. Based on a result from linear programming, we show that at an optimal solution, the number of demands that can have multiple paths with nonzero flows is of the order of the number of network links for three commonly used traffic engineering objectives. We introduce a multipath measure (MPM) and show that under certain traffic conditions and topological structures, the MPM is zero or close to zero, i.e., Multipath routing provides little or limited gain compared to single-path routing. For the all-pair traffic case, multipath routing is observed to be advantageous for small networks. When the number of nodes is about 25 or higher and all node pairs have traffic, this advantage drops as the number of nodes in a network increases. For the fat-tree data center topology, the benefit of multipath routing also drops as the number of pods increases. Our findings are somewhat against a common belief (expressed by the term "load sharing") that multipath routing is significantly better in effective distribution of traffic over the network resources.
机译:多路径路由为流量需求提供了通过网络使用多个路径的机会。在单点需求情况下,其优势显而易见。在多商品的情况下,当所有节点对(需求)潜在地产生流量时,它们将争夺相同的网络资源。在这项工作中,我们从流量工程的角度考虑了在多商品环境中通信网络中的多路径路由。基于线性规划的结果,我们表明,在最佳解决方案中,对于三个常用的流量工程目标,可以具有多路径且流量为非零的需求数量大约是网络链路数量的数量。我们介绍了一种多路径测度(MPM),并表明在某些流量条件和拓扑结构下,MPM为零或接近于零,即与单路径路由相比,多路径路由提供的增益很小或有限。对于全对流量情况,观察到多径路由对于小型网络是有利的。当节点数大约为25或更高并且所有节点对都具有流量时,此优势会随着网络中节点数的增加而降低。对于胖树数据中心拓扑,随着Pod数量的增加,多路径路由的优势也会下降。我们的发现在某种程度上违背了一个普遍的信念(用术语“负载共享”表示),即多路径路由在网络资源上有效地分配流量方面要好得多。

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