sdn的高吞吐量任播路由和无拥塞重构

Hongli Xu, Xiangyang Li, Liusheng Huang, Jianxin Wang, Bing Leng
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引用次数: 5

摘要

在这项工作中,我们专注于在软件定义网络(SDN)中设计高吞吐量的任播机制,因为任播路由是许多服务的基本构建块。具体来说,我们研究了有效实现基于sdn的任播系统的两个主要挑战:高吞吐量任播路由(HTAR)和无拥塞任播重构(CFAR)。针对第一个挑战,我们设计了一种基于全多项式时间逼近方案和单源不可分流路由方法的任意播路由(ARFU)算法。我们证明了ARFU产生的路由至少可以达到最优吞吐量的1/2(1+ξ),其中ξ > 0是一个任意小的常数。然后,我们提出了一种具有传递配置的任意播重构算法,称为ARTC,用于无拥塞。该算法试图找到一个至多包含T≥1个传递配置的路由重构过程,同时满足所有的流需求。当流量需求不能被满足时,ARTC使用一个可传递配置最大化最小吞吐量。仿真结果证明了算法的高效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-throughput anycast routing and congestion-free reconfiguration for SDNs
In this work, we focus on designing high-throughput anycast mechanisms in a software Defined Network (SDN), as anycast routing serves as a fundamental building block for many services. Specifically, we investigate two main challenges for efficient implementation of a SDN-based anycast system: high throughput anycast routing (HTAR) and congestion-free anycast reconfiguration (CFAR). For the first challenge, we design an anycast routing (ARFU) algorithm, based on the fully polynomial time approximation scheme and the single-source unsplittable flow routing method. We prove that ARFU produces a route that can achieve a throughput at least 1/2(1+ξ) of the optimum, where ξ > 0 is an arbitrarily small constant. We then propose an anycast reconfiguration algorithm with transitive configurations, called ARTC, for congestion-free. This algorithm tries to find a routing reconfiguration procedure consisting of at most T ≥ 1 transitive configurations while meeting all the flow demands. When traffic demands can not be satisfied, ARTC maximizes the minimum throughput using one transitive configuration. Our simulations demonstrate high-efficiency of our algorithms.
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