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Virtual Network Function Placement with Function Decomposition for Virtual Network Slice

机译:用于虚拟网络切片的具有功能分解的虚拟网络功能放置

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Virtual network functions (VNFs) are placed across the network to complete the required network performance of virtual network slice (vNS), and the placement of VNFs is flexible and problematic. Besides, a VNF can be decomposed into multiple sub-functions, and the same type of sub-function can be re-used by multiple VNFs. Therefore, the resources of subfunctions in different vNS requests can be shared and the cost of the substrate network is reduced. So, function decomposition makes the VNF placement problem more flexible and challenging. In this paper, we study the VNF placement problem with function decomposition for vNS, and formulate it as an integer linear programming (ILP) aiming to minimize the total cost of the substrate network. Then, an approach named Placement algorithm based on Function Decomposition (P-FD) is proposed to get a near-optimal solution of this problem. Finally, simulation results show that P-FD can achieve less total cost compared with algorithms in existing.
机译:虚拟网络功能(VNF)跨网络放置,以完成虚拟网络切片(vNS)所需的网络性能,并且VNF的放置很灵活且存在问题。此外,VNF可以分解为多个子功能,并且多个VNF可以重复使用相同类型的子功能。因此,可以共享不同vNS请求中子功能的资源,并降低了基础网络的成本。因此,功能分解使VNF放置问题更加灵活和具有挑战性。在本文中,我们研究了带有vNS功能分解的VNF放置问题,并将其公式化为整数线性规划(ILP),旨在最小化基板网络的总成本。然后,提出了一种基于函数分解的布局算法(P-FD),以得到该问题的近似最优解。最后,仿真结果表明,与现有算法相比,P-FD的总成本更低。

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