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Service Function Chain Composition, Placement, and Assignment in Data Centers

机译:数据中心的服务功能链组成,布局和分配

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With the development of network function virtualization (NFV), service function chains (SFCs) are deployed via virtual network functions (VNFs). In general, the SFCs are served via composition and then deployed into data center infrastructures. However, most of the existing works neglect SFC composition. Furthermore, they consider that VNF instances are independently deployed for each SFC, which may underutilize the computational power of servers. We consider, for each required VNF in the chain, the operator can either place it on a new instance or assign it to an established instance if the residual resource of that instance is sufficient. Such a deployment scheme can leverage resources more efficiently and we define it as SFC placement and assignment. In this paper, we first combine SFC composition, placement and assignment together to enhance resource allocation. We present the system model and formulate the problem as 0-1 integer programming. We aim to improve the VNF instance utilization as well as reduce the link consumption. A heuristic approach called Jcap is developed to solve the problem in two stages. The simulations show that Jcap achieves competitive performance with the optimal results obtained from mathematical model.
机译:随着网络功能虚拟化(NFV)的发展,服务功能链(SFC)通过虚拟网络功能(VNF)进行了部署。通常,SFC通过组合提供服务,然后部署到数据中心基础结构中。但是,大多数现有作品都忽略了SFC的组成。此外,他们认为VNF实例是为每个SFC独立部署的,这可能无法充分利用服务器的计算能力。对于链中每个所需的VNF,我们认为,如果该实例的剩余资源足够,则运营商可以将其放置在新实例上或将其分配给已建立的实例。这种部署方案可以更有效地利用资源,我们将其定义为SFC放置和分配。在本文中,我们首先将SFC的组成,放置和分配结合在一起以增强资源分配。我们提出系统模型并将问题表述为0-1整数编程。我们旨在提高VNF实例利用率并减少链路消耗。开发了一种称为Jcap的启发式方法来分两个阶段解决该问题。仿真结果表明,Jcap通过从数学模型获得的最佳结果获得了竞争性能。

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