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Constellation Design for the Noncoherent MIMO Rayleigh-Fading Channel at General SNR

机译:一般信噪比下非相干MIMO瑞利衰落信道的星座设计

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Constellation design for the noncoherent multiple-input–multiple-output (MIMO) block Rayleigh-fading channel is considered. For general signal-to-noise ratios (SNRs), starting from a given base unitary constellation of finite cardinality, and using the cutoff rate expression as the design criterion, input probabilities and per-antenna amplitudes for the constellation points are obtained via a difference of convex programming formulation. Using the mutual information as a performance metric, it is shown that the optimized constellations significantly outperform the base unitary designs from which they are obtained in the low-medium SNR regime, and indeed they also similarly outperform the mutual information achieved by isotropically distributed unitary inputs for the continuous input channel [i.e., the so-called unitary space–time capacity (USTC)]. At sufficiently high SNRs, the resulting mutual information coincides with that of the base unitary designs. Thus the optimum constellation design technique works over the entire range of SNRs. The bit energy/spectral efficiency tradeoff of the optimized constellations are also obtained, and these provide valuable insights on modulation and coding, which are especially useful for wideband channels where the SNR per degree of freedom is low.
机译:考虑了非相干多输入多输出(MIMO)块瑞利衰落信道的星座设计。对于一般的信噪比(SNR),从给定的有限基数的基本unit星座开始,并使用截止速率表达式作为设计标准,可以通过差值获得星座点的输入概率和每个天线幅度凸编程公式。使用互信息作为性能指标,结果表明,优化星座图在中低SNR体制下显着胜过从其获得基本星座图,而实际上,它们也同样表现出各向同性分布的单一输入所获得的互信息。连续输入通道[即,所谓的时空容量(USTC)]。在足够高的SNR情况下,最终的互信息与基本整体设计的互信息一致。因此,最佳星座设计技术可在整个SNR范围内工作。还获得了优化星座图的位能量/频谱效率折衷,它们在调制和编码方面提供了宝贵的见识,这对于每个自由度SNR较低的宽带信道特别有用。

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