Delay aware survivable routing with network coding in Software Defined Networks

Alija Pašić, P. Babarczi
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引用次数: 5

Abstract

It was demonstrated in transport networks that network (diversity) coding can provide sufficient redundancy to ensure instantaneous single link failure recovery, while near-optimal bandwidth efficiency can be reached. However, in the resulting multi-path routing problem the end-to-end delays were not considered. On the other hand, even in a European-scale network the delay difference of the paths has severe effect on the Quality-of-Service of application scenarios, such as video streaming. Thus, in this paper we thoroughly investigate survivable routing in Software Defined Networks (SDNs) with several additional delay bounds to the bandwidth cost minimization problem. We build on the fact that, if the user data is split into at most two parts, then the minimum cost coding solution has a well-defined acyclic structure of subsequent paths and disjoint path-pairs between the communication end-points. Complexity analysis and integer linear programs are provided to solve these delay aware survivable routing problems in SDNs.
软件定义网络中具有网络编码的延迟感知存活路由
在传输网络中证明,网络(分集)编码可以提供足够的冗余,以确保瞬时单链路故障恢复,同时可以达到接近最优的带宽效率。然而,在由此产生的多路径路由问题中,没有考虑端到端延迟。另一方面,即使在欧洲规模的网络中,路径的延迟差异也会严重影响视频流等应用场景的服务质量。因此,在本文中,我们深入研究了软件定义网络(sdn)中具有几个额外延迟界限的可存活路由,以解决带宽成本最小化问题。我们基于这样一个事实:如果用户数据最多被分成两部分,那么最小成本编码解决方案具有定义良好的后续路径和通信端点之间不相交路径对的无环结构。提出了复杂性分析和整数线性规划来解决sdn中延迟感知的生存性路由问题。
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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