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Performance Analysis of Dual-User Macrodiversity MIMO Systems with Linear Receivers in Flat Rayleigh Fading

机译:线性瑞利衰落下线性接收机双用户宏分集MIMO系统的性能分析

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摘要

The performance of linear receivers in the presence of co-channel interference in Rayleigh channels is a fundamental problem in wireless communications. Performance evaluation for these systems is well-known for receive arrays where the antennas are close enough to experience equal average SNRs from a source. In contrast, almost no analytical results are available for macrodiversity systems where both the sources and receive antennas are widely separated. Here, receive antennas experience unequal average SNRs from a source and a single receive antenna receives a different average SNR from each source. Although this is an extremely difficult problem, progress is possible for the two-user scenario. In this paper, we derive closed form results for the probability density function (pdf) and cumulative distribution function (cdf) of the output signal to interference plus noise ratio (SINR) and signal to noise ratio (SNR) of minimum mean squared error (MMSE) and zero forcing (ZF) receivers in independent Rayleigh channels with arbitrary numbers of receive antennas. The results are verified by Monte Carlo simulations and approximations and high SNR analysis are also derived. The results enable further system analysis such as the evaluation of outage probability, bit error rate (BER) and capacity.
机译:在瑞利信道中存在同信道干扰的情况下,线性接收机的性能是无线通信中的一个基本问题。这些系统的性能评估是众所周知的,因为接收阵列的天线距离足够近,可以从源头获得相等的平均SNR。相比之下,对于源和接收天线都被广泛分开的宏观分集系统,几乎没有分析结果。在这里,接收天线从一个源接收到的平均SNR不相等,而单个接收天线从每个源接收到的平均SNR却不同。尽管这是一个非常困难的问题,但对于两个用户的方案,仍可能取得进展。在本文中,我们得出了最小均方误差(SINR)和信噪比(SNR)的概率密度函数(pdf)和累积分布函数(cdf)的闭式结果MMSE和零强迫(ZF)接收器在具有任意数量接收天线的独立瑞利信道中。通过蒙特卡洛仿真验证了结果,并得出了近似值和高SNR分析。结果使进一步的系统分析成为可能,例如断电概率,误码率(BER)和容量的评估。

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