Interference-mitigation based antenna selection scheme in device-to-device communication underlaying cellular networks

Yuyang Wang, Shi Jin, Yiyang Ni, Kai‐Kit Wong
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引用次数: 1

Abstract

This paper investigates an antenna selection scheme performing interference mitigation in device-to-device (D2D) communication underlaying cellular networks. Exact closed-form expression of the ergodic achievable rate is derived. Based on this result, the analysis in the high SNR regime at the base station (BS) and the scenario with very large antenna number are investigated, which indicate the saturation of the ergodic achievable rate when these parameters grow very large. Next, two approximations are then shown to be fairly tight, thus yielding much simpler expression of the ergodic achievable rate. Furthermore, we provide the performance analyses in the small cell and macro cell respectively and show that in the small cell, the high SNR approximation of the ergodic achievable rate varies proportionally with the transmit power ratio between the BS and the D2D transmitter. In the macro cell setting where the pathloss factor between the D2D terminals becomes much larger, we show that the ergodic achievable rate's improvement potentials by increasing the antenna number can be elevated with higher transmit power at the BS. Numerical results are then provided to verify the correctness of the expressions derived above. Some observations are made accordingly.
蜂窝网络中基于设备对设备通信的干扰抑制天线选择方案
本文研究了一种在蜂窝网络下的设备对设备(D2D)通信中执行干扰缓解的天线选择方案。导出了遍历可达率的精确封闭表达式。在此基础上,对高信噪比条件下的基站和超大天线数条件下的遍历可达速率进行了分析,表明当这些参数变大时,遍历可达速率达到饱和。接下来,两个近似被证明是相当紧密的,从而产生更简单的遍历可达到速率的表达式。此外,我们分别在小小区和宏小区中进行了性能分析,并表明在小小区中,遍历可达速率的高信噪比近似与BS和D2D发射机之间的发射功率比成比例变化。在宏观小区设置中,D2D终端之间的路径损耗因子变得更大,我们表明通过增加天线数可以提高遍历可达率的改进潜力,在BS处可以提高发射功率。数值结果验证了上述推导表达式的正确性。据此提出了一些意见。
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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