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Joint mode selection, VBS association and resource allocation for WNV-enabled cellular D2D communication networks

机译:支持WNV的蜂窝D2D通信网络的联合模式选择,VBS关联和资源分配

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摘要

Cellular device-to-device (D2D) communication networks are expected to improve user quality of service and network transmission performance significantly. In this paper, we apply the technology of wireless network virtualization to cellular D2D communication networks, and slice physical base stations into virtual base stations (VBSs). The problems of transmission mode selection, resource allocation and VBS association are jointly studied. Stressing the importance of the service delay of all the user equipments in the networks, we formulate the joint optimal design problem as a service delay minimization problem. As the formulated optimization problem is an NP-hard problem, which cannot be solved conveniently, we propose a heuristic algorithm, which iteratively solves three subproblems, i.e., transmission mode selection subproblem, resource allocation subproblem and VBS association subproblem. In particular, to solve the resource allocation and VBS association subproblems, we apply Lagrange dual method and modified Kuhn-Munkres algorithm, respectively. Simulation results demonstrate the effectiveness of the proposed algorithm.
机译:蜂窝设备到设备(D2D)通信网络有望大大提高用户的服务质量和网络传输性能。在本文中,我们将无线网络虚拟化技术应用于蜂窝D2D通信网络,并将物理基站切成虚拟基站(VBS)。共同研究了传输模式选择,资源分配和VBS关联的问题。为了强调网络中所有用户设备的服务延迟的重要性,我们将联合优化设计问题表述为服务延迟最小化问题。由于提出的优化问题是一个NP难问题,难以解决,我们提出了一种启发式算法,该算法迭代地解决了三个子问题,即传输模式选择子问题,资源分配子问题和VBS关联子问题。特别是,为了解决资源分配和VBS关联子问题,我们分别应用了Lagrange对偶方法和改进的Kuhn-Munkres算法。仿真结果证明了该算法的有效性。

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