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On the Capacity of Large-MIMO Block-Fading Channels

机译:关于大MIMO衰落信道的容量

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We characterize the capacity of Rayleigh block-fading multiple-input multiple-output (MIMO) channels in the noncoherent setting where transmitter and receiver have no a priori knowledge of the realizations of the fading channel. We prove that unitary space-time modulation (USTM) is not capacity-achieving in the high signal-to-noise ratio (SNR) regime when the total number of antennas exceeds the coherence time of the fading channel (expressed in multiples of the symbol duration), a situation that is relevant for MIMO systems with large antenna arrays (large-MIMO systems). This result settles a conjecture by Zheng & Tse (2002) in the affirmative. The capacity-achieving input signal, which we refer to as Beta-variate space-time modulation (BSTM), turns out to be the product of a unitary isotropically distributed random matrix, and a diagonal matrix whose nonzero entries are distributed as the square-root of the eigenvalues of a Beta-distributed random matrix of appropriate size. Numerical results illustrate that using BSTM instead of USTM in large-MIMO systems yields a rate gain as large as 13% for SNR values of practical interest.
机译:我们在非相干环境中表征了瑞利块衰落多输入多输出(MIMO)信道的容量,在这种情况下,发射机和接收机对衰落信道的实现没有先验知识。我们证明,当天线总数超过衰落信道的相干时间(以符号的倍数表示)时,在高信噪比(SNR)体制中,单时空调制(USTM)不能实现容量持续时间),这与具有大型天线阵列的MIMO系统(大型MIMO系统)有关。该结果肯定了Zheng&Tse(2002)的一个猜想。达到容量的输入信号,我们称为Beta变量时空调制(BSTM),结果是一个单一的各向同性分布的随机矩阵与一个对角矩阵的乘积,对角矩阵的非零项分布为具有适当大小的Beta分布随机矩阵的特征值的根。数值结果表明,在大型MIMO系统中使用BSTM代替USTM可获得SNR值高达13%的实用率。

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