Performance analysis of power control for device-to-device communication in cellular MIMO systems

M.G. Rego, T. Maciel, Henrique de H. M. Barros, F. Cavalcanti, Gábor Fodor
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引用次数: 27

Abstract

The Device-to-Device (D2D) communication can increase data rates and resource utilization in cellular networks. However, the direct application of the D2D communication can cause harmful interference to the cellular network. Therein, power control algorithms become essential tools to keep interference controlled and to ensure improved system performance. In this paper, we study two power control strategies for D2D communication within Multiple Input Multiple Output (MIMO) cellular networks. In the first strategy, each user achieves a certain target Signal to Interference-plus-Noise Ratio (SINR) while minimizing the total transmit power. In the second one, the target SINR varies with user's transmit power. Simulation results show that system capacity can be improved only if D2D communication and power control are appropriately combined.
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蜂窝MIMO系统中设备对设备通信的功率控制性能分析
设备到设备(D2D)通信可以提高蜂窝网络中的数据速率和资源利用率。然而,直接应用D2D通信会对蜂窝网络造成有害干扰。因此,功率控制算法成为控制干扰和提高系统性能的重要工具。本文研究了多输入多输出(MIMO)蜂窝网络中D2D通信的两种功率控制策略。在第一种策略中,每个用户在最小化总发射功率的同时达到一定的目标信噪比(SINR)。在第二种情况下,目标信噪比随用户发射功率的变化而变化。仿真结果表明,只有将D2D通信和功率控制适当地结合起来,才能提高系统容量。
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