Grassmannian signalling achieves the ergodic high SNR capacity of the non-coherent MIMO relay channel within an SNR-independent gap

R. Gohary, H. Yanikomeroglu
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Abstract

This paper considers the ergodic non-coherent capacity of a multiple-input multiple-output frequency-flat block Rayleigh fading relay channel. It is shown that for this channel restricting the input distribution to be isotropic on a compact Grassmann manifold maximizes an upper bound on the cut-set bound at high signal-to-noise ratios (SNRs). Furthermore, Grassmannian signalling at the source achieves this bound within an SNR-independent gap. For moderate-to-high SNRs, a Grassmannian decode-and-forward (DF) relaying scheme is devised, and the optimal signalling dimensionality that minimizes the gap to the upper bound is obtained.
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格拉斯曼信令在信噪比无关的间隙内实现了非相干MIMO中继信道的遍历高信噪比容量
研究了多输入多输出平块瑞利衰落中继信道的遍历非相干容量。结果表明,在高信噪比(SNRs)条件下,将该通道的输入分布限制为紧致格拉斯曼流形上的各向同性,可使切集界上界达到最大值。此外,源处的格拉斯曼信号在信噪比无关的间隙内实现了这个界限。针对中高信噪比,设计了一种格拉斯曼式解码转发(DF)中继方案,并获得了使距离上界最小的最优信令维数。
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