首页> 外文会议>Annual Allerton Conference on Communication, Control, and Computing; 20040929-1001; Monticello,IL(US) >The Capacity Loss of Uncorrelated Equi-Power Gaussian Input over MIMO Channel
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The Capacity Loss of Uncorrelated Equi-Power Gaussian Input over MIMO Channel

机译:MIMO信道上不相关的等功率高斯输入的容量损失

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We investigate the capacity loss of uncorrelated Gaussian input with equal power (i.i.d Gaussian input) over a multi-input multi-output linear additive noise (not necessarily Gaussian nor uncorrelated) channel. Previous work showed that this is the best input in the case of Gaussian noise, assuming the channel matrix is known at the receiver but unknown at the transmitter. We show that i.i.d Gaussian is a robust input also when the noise is not Gaussian and derive bounds for the capacity loss. Specifically, we show that for n_t transmit antennas and n_r receive antennas, the capacity loss of i.i.d Gaussian input is smaller than min {n_t/2, n_r/2 log_2 (1 + n_t_r)} bits, for any noise and channel matrix. This bound is apparently not tight. Nevertheless, for the case of Gaussian noise we derive a stronger bound: n_r/2 log_2(n_t_r) bits for 1 ≤ n_r ≤ n_t/e and n_r/2 (log_2 (e))/e bits for n_r ≥ n_t/e which is tight for a "critical" channel matrix.
机译:我们研究了在多输入多输出线性加性噪声(不一定是高斯或不相关)通道上具有相等功率(即高斯输入)的不相关高斯输入的容量损失。先前的工作表明,在高斯噪声的情况下,这是最好的输入,假设通道矩阵在接收器处已知但在发送器处未知。我们表明,当噪声不是高斯噪声时,i.d。高斯函数也是可靠的输入,并得出容量损失的界限。具体来说,我们表明对于任何噪声和信道矩阵,对于n_t个发射天线和n_r个接收天线,iid高斯输入的容量损耗小于min {n_t / 2,n_r / 2 log_2(1 + n_t / n_r)}位。这个界限显然并不严格。然而,对于高斯噪声,我们得出了一个更强的界:1≤n_r≤n_t / e的n_r / 2 log_2(n_t / n_r)位和n_r≥n_t /的n_r / 2(log_2(e))/ e位e对于“关键”信道矩阵来说是严格的。

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