Achievable sum rate analysis of ZF receivers in 3D MIMO with Rayleigh/log-normal fading channels

Fangqing Tan, Hui Gao, Tiejun Lv, Jie Zeng
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引用次数: 2

Abstract

Three dimensions multiple-input multiple-output (3D MIMO) system is now gaining a growing interest among researchers in wireless communication, the reason can be attributed to its potential to enable a variety of strategies like user specific 3D beamforming and cell-splitting. In this paper, we pursue the performance evaluation of 3D MIMO system employing zero-forcing (ZF) receivers, accounting for both large and small-scale fading. In particular, we consider the classical log-normal model and antenna gain with tilting angle, we derive the optimal tilting angle for 3D MIMO system which maximizes the sum rate, furthermore, based on the optimal tilting angle, we propose a closed-form linear approximation on the achievable sum rate in the asymptotically high signal-to-noise ratio (SNR) and low-SNR regime, respectively. We investigate the effect of antenna tilting angle, number of base station (BS) antennas and the distance between BS and the center of building on the achievable sum rate performance of 3D MIMO.
基于瑞利/对数正态衰落信道的三维MIMO ZF接收机可达和速率分析
三维多输入多输出(3D MIMO)系统正引起无线通信研究人员越来越多的兴趣,其原因可归因于其潜在的多种策略,如用户特定的3D波束形成和蜂窝分裂。在本文中,我们对采用零强迫(ZF)接收机的三维MIMO系统的性能进行了评估,包括大衰落和小衰落。特别地,我们考虑了经典对数正态模型和天线增益与倾斜角度的关系,推导出了3D MIMO系统最大和速率的最佳倾斜角度,并在最佳倾斜角度的基础上,分别对渐近高信噪比(SNR)和低信噪比下可实现的和速率提出了封闭形式的线性逼近。研究了天线倾斜角度、基站天线数量以及基站与建筑物中心之间的距离对3D MIMO可实现和速率性能的影响。
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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