Energy-Efficient Power Control for Underlaying Full-Duplex Device-to-Device Communications

Jianfeng Ding, Ling-ge Jiang, Chen He
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引用次数: 5

Abstract

In this paper, we investigate the optimal energy-efficient power control scheme for full-duplex (FD) device-to-device (D2D) communications in cellular networks. Our purpose is to maximize the energy efficiency (EE) of FD D2D pairs while fulfilling the minimum rate requirements of both D2D user equipments (DUEs) and cellular user equipment (CUE). The EE problem is formulated into a non-convex and nonlinear fractional form which is difficult to be solved directly. In order to solve the problem, we propose an effective algorithm that is based on both Dinkelbach method and a power minimization step while maintaining the throughput of the FD D2D pairs. Simulation results validate the performance of the proposed algorithm and show the improvement of the system EE. Compared with the conventional half-duplex (HD) D2D communications, FD D2D communications can obtain much higher EE and SE when the self-interference is effectively mitigated.
底层全双工设备对设备通信的节能功率控制
在本文中,我们研究了蜂窝网络中全双工(FD)设备对设备(D2D)通信的最优节能功率控制方案。我们的目的是最大限度地提高FD D2D对的能源效率(EE),同时满足D2D用户设备(会费)和蜂窝用户设备(CUE)的最低速率要求。将EE问题化为难以直接求解的非凸非线性分数形式。为了解决这个问题,我们提出了一种有效的算法,该算法基于Dinkelbach方法和功率最小化步骤,同时保持FD D2D对的吞吐量。仿真结果验证了该算法的性能,并显示了系统EE的改进。与传统的半双工(HD) D2D通信相比,FD D2D通信在有效减轻自干扰的情况下可以获得更高的EE和SE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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