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Further Results on the Capacity and Error Probability Analysis of Noncoherent MIMO Systems in the Low SNR Regime

机译:低信噪比下非相干MIMO系统容量和错误概率分析的更多结果

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摘要

The noncoherent single-user multiple-input–multiple-output (MIMO) channel in the low signal-to-noise ratio (SNR) regime is investigated from two viewpoints: capacity and probability of error analysis. The novelty in both viewpoints is that we allow an arbitrary correlation structure for the Gaussian observation noise. First, we look at the capacity of the spatially correlated Rayleigh fading channel. We investigate the impact of channel and noise correlation on the mutual information for the on–off and Gaussian signaling schemes. Our findings establish that, in the low SNR regime, mutual information is maximized when the transmit antennas are fully correlated (the same holds for the receive array). Then, the deterministic channel setup is considered and a pairwise error probability (PEP) analysis for the generalized likelihood ratio test (GLRT) receiver is performed. This leads to a codebook design criterion on which we base the construction of new space-time constellations. Their performance is assessed by computer simulations and, as a byproduct, we show that our codebooks are also of interest for Bayesian receivers, which decode constellations with nonuniform priors.
机译:从以下两个角度研究了低信噪比(SNR)机制中的非相干单用户多输入多输出(MIMO)信道:容量和错误分析的可能性。两种观点的新颖之处在于,我们都允许对高斯观测噪声使用任意的相关结构。首先,我们看一下空间相关瑞利衰落信道的容量。我们针对开-关和高斯信号方案研究了信道和噪声相关性对互信息的影响。我们的发现确定,在低SNR体制中,当发射天线完全相关时,互信息最大化(接收阵列也是如此)。然后,考虑确定性信道设置,并针对广义似然比测试(GLRT)接收器执行成对错误概率(PEP)分析。这导致了一个密码本设计标准,我们以此为基础来构建新的时空星座。通过计算机仿真评估了它们的性能,作为副产品,我们证明了我们的密码本也受到贝叶斯接收器的关注,该接收器以非均匀先验对星座进行解码。

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