Analytical Performance of Rayleigh-Product MIMO Channels with Arbitrary-Power Co-Channel Interference and Noise

Yongpeng Wu, Shi Jin, Xiqi Gao
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引用次数: 1

Abstract

This paper investigates the performance of Rayleigh-product multiple-input multiple-output (MIMO) channels in the presence of both co-channel interference (CCI) and thermal noise. We obtain closed form expressions for the cumulative distribution function and probability density function of the output signal-to interference-plus-noise ratio (SINR) when optimum combining is employed. In contrast to prior results, our expressions apply for arbitrary numbers of interferers with arbitrary powers. Furthermore, the impact of noise is firstly addressed in our expressions. These are made possible based on the recent random matrix theory tools from which the new statistical properties of maximum eigenvalue of the resultant channel matrix can be derived. The new statistical results permit a general analysis for outage probability of the optimum combining system in Rayleigh-product MIMO channels. Simulation results are also provided to validate the analysis and to examine the effect of CCI and thermal noise on performance.
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具有任意功率同信道干扰和噪声的瑞利积MIMO信道性能分析
本文研究了瑞利积多输入多输出(MIMO)信道在共信道干扰(CCI)和热噪声存在下的性能。得到了最优组合时输出信噪比(SINR)的累积分布函数和概率密度函数的封闭表达式。与先前的结果相反,我们的表达式适用于具有任意幂的任意数目的干扰。此外,在我们的表达式中首先解决了噪声的影响。这些都是基于最近的随机矩阵理论工具而实现的,从这些工具中可以推导出所得到的信道矩阵的最大特征值的新统计性质。新的统计结果允许对瑞利产品MIMO信道中最佳组合系统的中断概率进行一般分析。仿真结果验证了分析的正确性,并检验了CCI和热噪声对性能的影响。
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