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Optimal Virtual Network Function Deployment for 5G Network Slicing in a Hybrid Cloud Infrastructure

机译:混合云基础设施中5G网络切片的最佳虚拟网络功能部署

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Network virtualization is a key enabler for 5G systems to support the expected use cases of vertical markets. In this context, we study the joint optimal deployment of Virtual Network Functions (VNFs) and allocation of computational resources in a hybrid cloud infrastructure by taking the requirements of the 5G services and the characteristics of the cloud architecture into consideration. The resulting mixed-integer problem is reformulated as an integer linear problem, which can be solved by using a standard solver. Our results underline the advantages of a hybrid infrastructure over a standard cloud radio access network consisting only of a central cloud, and show that the proposed mechanism to deploy VNF chains leads to high resource utilization efficiency and large gains in terms of the number of supported VNF chains. To deal with the computational complexity of optimizing a large number of clouds and VNF chains, we propose a simple low-complexity heuristic that attempts to find a feasible VNF deployment solution with a limited number of functional splits. Numerical results indicate that the performance of the proposed heuristic is close to the optimal one when the edge clouds are well dimensioned with respect to the computational requirements of the 5G services.
机译:网络虚拟化是5G系统的关键推动器,以支持垂直市场的预期用例。在这种情况下,我们通过考虑5G服务的要求和考虑云架构的特征,研究虚拟网络功能(VNFS)的联合最佳部署和混合云基础架构中的计算资源分配。由此产生的混合整数问题被重新重新重新重新重新重新设计整数线性问题,这可以通过使用标准求解器来解决。我们的结果强调了混合基础设施的优点,仅通过一个中央云组成的标准云无线电接入网络,并显示提出的部署VNF链的机制导致高资源利用效率和支持的VNF数量的大幅增加链条。为了处理优化大量云和VNF链的计算复杂性,我们提出了一种简单的低复杂性启发式,试图找到具有有限数量的功能分裂的可行的VNF部署解决方案。数值结果表明,当边缘云相对于5G服务的计算要求良好的尺寸时,拟议启发式的性能接近最佳第一。

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