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Dual: Deploy stateful virtual network function chains by jointly allocating data-control traffic

机译:双重:通过联合分配数据控制流量来部署有状态虚拟网络功能链

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Network Function Virtualization (NFV) allows to deploy network functions at low cost and high flexibility. Usually traffic needs to pass through several network functions in a particular order, which is known as network function chaining. Due to capacity limitation, one instance of a particular network function in the chain usually needs to be scaled to multiple instances when the traffic load increases. Recent studies show that network functions maintain rich internal states, which correlate with flows and determine their processing actions. In order to guarantee network functions to behave the same as before the scaling, these states on multiple instances need to be synchronized. As a result, communication requirement for synchronizing these states arises. Our experimental investigations show that such communication traffic for state synchronization is non-negligible. Unfortunately, to our best knowledge, no existing work for network function chain deployment considered such traffic. In this paper, we consider the problem of allocating both flow traffic and synchronization traffic with the goal to minimize the consumption of network interface card's bandwidth, which is considered as the bottleneck resource of the network. The main challenge is that such two kinds of traffic are correlated and even conflicting. To deal with this challenge, a new graph-based model named Dual (Deploy Stateful Virtual Network Function Chains by Jointly Allocating Data-Control Traffic) is proposed, which characterizes the interaction of data-control traffic in an elegant manner. Based on Dual, the problem mentioned above is formulated through ILP and an approximation algorithm is designed. Extensive simulations show that the proposed approach is effective in terms of reducing server bandwidth usage. (C) 2019 Published by Elsevier B.V.
机译:网络功能虚拟化(NFV)允许以低成本和高灵活性部署网络功能。通常,流量需要以特定顺序通过几个网络功能,这称为网络功能链接。由于容量限制,当流量负载增加时,通常需要将链中特定网络功能的一个实例扩展为多个实例。最近的研究表明,网络功能保持丰富的内部状态,这些内部状态与流相关并确定其处理动作。为了保证网络功能与扩展之前的功能相同,多个实例上的这些状态需要进行同步。结果,产生了用于同步这些状态的通信需求。我们的实验研究表明,这种用于状态同步的通信流量不可忽略。不幸的是,据我们所知,没有任何有关网络功能链部署的现有工作考虑这种流量。在本文中,我们考虑同时分配流量和同步流量的问题,目的是最大程度地减少网络接口卡带宽的消耗,该带宽被视为网络的瓶颈资源。主要的挑战是,这两种流量是相关的甚至是冲突的。为了应对这一挑战,提出了一种新的基于图形的模型,该模型称为Dual(通过联合分配数据控制流量来部署有状态虚拟网络功能链),该模型以优雅的方式描述了数据控制流量的交互。在对偶的基础上,通过ILP提出了上述问题,并设计了一种近似算法。大量的仿真表明,所提出的方法在减少服务器带宽使用方面是有效的。 (C)2019由Elsevier B.V.发布

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