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Correlated MIMO Rayleigh fading channels: capacity and optimal signaling

机译:相关的MIMO Rayleigh衰落信道:容量和最佳信令

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The capacity of the MIMO channel is investigated under the assumption that the elements of the channel matrix are zero mean proper complex Gaussian random variables with a general correlation structure. It is assumed that the receiver knows the channel perfectly but that the transmitter knows only the channel statistics. The analysis is carried out using an equivalent virtual representation of the channel that is obtained via a spatial discrete Fourier transform. The non-vanishing virtual channel coefficients are approximately independent and their variances correspond to samples of the underlying two-dimensional spatial scattering function that reflects the channel gain in different receive and transmit angular directions. It is shown that, in the virtual domain, the capacity achieving input vector is a zero mean proper complex Gaussian vector, with a diagonal covariance matrix /spl Lambda//spl deg/, whose components can be computed numerically. Furthermore, in the asymptotic regime of low signal-to-noise ratio (SNR), it is shown that only one element of /spl Lambda//spl deg/ is non-zero, i.e., that beamforming along one virtual transmit angle is asymptotically optimum. In the more general cast of arbitrary SNR, a necessary and sufficient condition for the optimality of beamforming is also derived.
机译:假设信道矩阵的元素是具有一般相关结构的零均值适当复数高斯随机变量,则研究MIMO信道的容量。假定接收机完全了解该信道,但是发射机仅知道信道统计信息。使用通过空间离散傅立叶变换获得的等效通道虚拟表示进行分析。非消失的虚拟信道系数近似独立,并且它们的方差对应于基础二维空间散射函数的样本,该样本在不同的接收和发射角度方向上反映了信道增益。结果表明,在虚拟域中,实现输入向量的能力是零均值适当复高斯向量,其对角协方差矩阵为/ spl Lambda // spl deg /,其分量可以通过数值计算。此外,在低信噪比(SNR)的渐近状态下,表明/ spl Lambda // spl deg /中只有一个元素为非零,即,沿一个虚拟发射角的波束成形是渐近的最佳。在更一般的任意SNR转换中,还得出了波束成形优化的必要和充分条件。

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