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BER and Outage Probability Approximations for LMMSE Detectors on Correlated MIMO Channels

机译:相关MIMO信道上LMMSE检测器的BER和停电概率近似值

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This paper is devoted to the study of the performance of the linear minimum mean-square error (LMMSE) receiver for (receive) correlated multiple-input multiple-output (MIMO) systems. By the random matrix theory, it is well known that the signal-to-noise ratio (SNR) at the output of this receiver behaves asymptotically like a Gaussian random variable as the number of receive and transmit antennas converge to +infin at the same rate. However, this approximation being inaccurate for the estimation of some performance metrics such as the bit error rate (BER) and the outage probability, especially for small system dimensions, Li proposed convincingly to assume that the SNR follows a generalized gamma distribution which parameters are tuned by computing the first three asymptotic moments of the SNR. In this paper, this technique is generalized to (receive) correlated channels, and closed-form expressions for the first three asymptotic moments of the SNR are provided. To obtain these results, a random matrix theory technique adapted to matrices with Gaussian elements is used. This technique is believed to be simple, efficient, and of broad interest in wireless communications. Simulations are provided, and show that the proposed technique yields in general a good accuracy, even for small system dimensions.
机译:本文致力于研究(接收)相关多输入多输出(MIMO)系统的线性最小均方误差(LMMSE)接收器的性能。通过随机矩阵理论,众所周知,当接收和发送天线的数量以相同的速率收敛到+ infin时,该接收器的输出端的信噪比(SNR)渐近地表现为高斯随机变量。但是,这种近似值对于某些性能指标(例如误码率(BER)和中断概率)的估计是不准确的,特别是对于较小的系统尺寸,李先生令人信服地提出,假设SNR遵循参数经过调整的广义伽玛分布通过计算SNR的前三个渐近矩。在本文中,将这种技术推广到(接收)相关通道,并提供SNR的前三个渐近矩的闭式表达式。为了获得这些结果,使用了适用于具有高斯元素的矩阵的随机矩阵理论技术。该技术被认为是简单,有效的,并且在无线通信中具有广泛的兴趣。提供的仿真结果表明,即使对于较小的系统尺寸,所提出的技术通常也具有良好的精度。

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