实现业务功能链连续可用时间最大化的虚拟网络功能分配

R. Kang, Fujun He, Takehiro Sato, E. Oki
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引用次数: 3

摘要

以网络中业务功能链(sfc)的连续可用时间最大化为目标,提出了一种基于时序的虚拟网络功能分配优化模型。该模型抑制了由于节点不可用和VNFs的重新分配而导致的业务中断。与传统模型相比,该模型根据网络节点的可用性调度来计算VNF在一系列时隙中的分配,从而提供每个时隙中每个网络节点是否可用的信息。我们将所提出的模型表述为一个整数线性规划问题,其目标是最大化每个SFC中最长连续可用时隙的最小个数。数值结果表明,与现有模型相比,所提出的模型提高了SFC的连续可用时间。
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Virtual Network Function Allocation to Maximize Continuous Available Time of Service Function Chains
This paper proposes an optimization model to derive a virtual network function (VNF) allocation for time slots in sequence aiming to maximize the continuous available time of service function chains (SFCs) in a network. The proposed model suppresses service interruptions due to the unavailability of nodes and the reallocation of VNFs. Compared with conventional models, the proposed model computes the VNF allocation in a series of time slots based on the network node availability schedule, which provides information on whether each network node is available at each time slot. We formulate the proposed model as an integer linear programming problem with the goal of maximizing the minimum number of longest continuous available time slots in each SFC. The numerical results show that the proposed model improves the continuous available time of SFCs compared with existing models.
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