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On Coding for Reliable VNF Chaining in DCNs

机译:DCN中可靠VNF链接的编码

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摘要

We study how erasure coding can improve service reliability in Data Center Networks (DCN). To this end, we find that coding can be best deployed in systems, where i) traffic is split into multiple parallel sub-flows, ii) each sub-flow is encoded; iii) Virtual Network Functions (VNF) concatenated into Service Function Chain (SFC) are replicated into at least as many VNF instances as there are sub-flows, resulting in parallel sub-SFCs; and iv) all coded sub-flows are distributed over parallel paths and processed in parallel. We study service reliability as function of the level of parallelization within DCN and the resulting amount of redundancy. Based on the probability theory and by considering failures of path segments, VNF and server failures, we analytically derive the probability that parallel sub-flows are successfully processed by the parallelized SFC and that the original serial traffic can be successfully recovered without service interruptions. We compare the proposed failure protection with coding and the standard backup protection and evaluate the related overhead of both methods, including decoding, traffic redirection and VNF migration. The results not only show the benefit of our scheme for reliability, but also a reduced overhead required in comparison to backup protection.
机译:我们研究了擦除编码如何提高数据中心网络(DCN)中的服务可靠性。为此,我们发现编码可以最好地部署在以下系统中:i)将流量分成多个并行子流,ii)每个子流都进行编码; iii)连接到服务功能链(SFC)中的虚拟网络功能(VNF)被复制到至少与子流一样多的VNF实例中,从而形成并行子SFC; iv)所有编码子流均分布在并行路径上并进行并行处理。我们研究服务可靠性与DCN内并行化级别以及所产生的冗余量之间的关系。基于概率论并考虑路径段的故障,VNF和服务器故障,我们通过分析得出了并行SFC成功处理并行子流并且可以成功恢复原始串行流量而不会中断服务的概率。我们将建议的故障保护与编码和标准备份保护进行了比较,并评估了两种方法的相关开销,包括解码,流量重定向和VNF迁移。结果不仅显示了我们的方案在可靠性方面的优势,而且与备份保护相比,还减少了所需的开销。

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