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A Coverage-Aware Resource Provisioning Method for Network Slicing

机译:一种网络切片的覆盖感知资源配置方法

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With network slicing in 5G networks, Mobile Network Operators can create various slices for Service Providers (SPs) to accommodate customized services. Usually, the various Service Function Chains (SFCs) belonging to a slice are deployed on a best-effort basis. Nothing ensures that the Infrastructure Provider (InP) will be able to allocate enough resources to cope with the increasing demands of some SP. Moreover, in many situations, slices have to be deployed over some geographical area: coverage as well as minimum per-user rate constraints have then to be taken into account. This paper takes the InP perspective and proposes a slice resource provisioning approach to cope with multiple slice demands in terms of computing, storage, coverage, and rate constraints. The resource requirements of the various SFCs within a slice are aggregated within a graph of Slice Resource Demands (SRD). Infrastructure nodes and links have then to be provisioned so as to satisfy all SRDs. This problem leads to a Mixed Integer Linear Programming formulation. A two-step approach is considered, with several variants, depending on whether the constraints of each slice to be provisioned are taken into account sequentially or jointly. Once provisioning has been performed, any slice deployment strategy may be considered on the reduced-size infrastructure graph on which resources have been provisioned. Simulation results demonstrate the effectiveness of the proposed approach compared to a more classical direct slice embedding approach.
机译:通过5G网络中的网络切片,移动网络运营商可以为服务提供商(SPS)创建各种切片以适应自定义服务。通常,属于切片的各种服务函数链(SFC)是以最佳努力部署的。没有什么能确保基础设施提供商(INP)能够分配足够的资源来应对一些SP的需求不断增加。此外,在许多情况下,必须在一些地理区域部署切片:覆盖范围以及最低每用户速率约束的覆盖率将被考虑在内。本文采用INP的透视图,提出了一个切片资源<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999 / xlink“>配置在计算,存储,覆盖范围和速率约束方面具有多种切片需求的方法。切片中各种SFC的资源要求在切片资源需求图(SRD)的图表中聚合。然后将基础设施节点和链接进行配置以满足所有SRD。此问题导致混合整数线性编程配方。考虑使用几种变体的两步方法,具体取决于要配置的每个切片的约束是否被依次或共同考虑。一旦执行了配置,就可以考虑任何切片部署策略,在缩小大小的基础架构图上被配置在哪些资源。仿真结果表明,与更经典的直接切片嵌入方法相比,所提出的方法的有效性。

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