Multi-polarized Channel Model and Performance Analysis for Massive MIMO Systems

Manlin Wang, Yinghong Guo, Bin Xia
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Abstract

Antenna polarization is a promising resource for improving antenna array compactness in space-limited scenarios that have not been fully exploited. In this paper, we investigate the effect of the multi-polarization on the performance of the massive multiple-input multiple-output (MIMO) system. Traditional MIMO channel modeling and performance analysis methods are based on the plane wavefront, wide-sense stationary, and small-angle assumptions, which is not suitable when the scatterers are distributed within the Rayleigh distance of the antenna arrays for the massive MIMO system. To this end, we first propose a multi-polarized stochastic channel model by considering the antenna pattern and the channel polarization properties. The parabolic wavefront and environment evolution effects are also incorporated into the proposed model to accurately characterize the near-field effect and non-stationary characteristics of the massive MIMO system. We then derive the analytical and closed-form expressions of the spatial cross-correlation function (SCF) to evaluate the statistical channel characteristics of the multi-polarized system. Numerical results show an excellent agreement between the simulated channels and the theoretical ones in terms of the SCF. Besides, simulation results also indicate that it is beneficial to reduce the correlation between antennas and increase channel capacity by employing the multi-polarized antennas, especially for compact antenna arrays.
大规模MIMO系统的多极化信道模型及性能分析
在空间有限的情况下,天线极化是提高天线阵列紧凑性的一种有希望的资源,但尚未得到充分利用。本文研究了多极化对大规模多输入多输出(MIMO)系统性能的影响。传统的MIMO信道建模和性能分析方法基于平面波前、广义平稳和小角度假设,不适用于大规模MIMO系统中散射体分布在天线阵列瑞利距离内的情况。为此,我们首先提出了考虑天线方向图和信道极化特性的多极化随机信道模型。该模型还考虑了抛物波前效应和环境演化效应,以准确表征大规模MIMO系统的近场效应和非平稳特性。然后,我们推导了空间互相关函数(SCF)的解析表达式和封闭表达式,以评估多极化系统的统计信道特性。数值计算结果表明,模拟通道与理论通道在SCF方面有很好的一致性。此外,仿真结果还表明,采用多极化天线有利于减少天线间的相关性,增加信道容量,特别是对于紧凑的天线阵列。
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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