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MIMO intensity-modulation channels: Capacity bounds and high SNR characterization

机译:MIMO强度调制通道:容量限制和高SNR表征

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The capacity of MIMO intensity modulation channels is studied. The non-negativity of the transmit signal (intensity) poses a challenge on the precoding of the transmit signal, which limits the applicability of classical schemes in this type of channels. To resolve this issue, capacity lower bounds are developed by using precoding-free schemes. This is achieved by channel inversion or QR decomposition to convert the MIMO channel to a set of parallel channels. The achievable rate of a DC-offset SVD based scheme is also derived as a benchmark. Then, a capacity upper bound is derived and is shown to coincide with the achievable rate of the QR decomposition based scheme at high SNR, consequently characterizing the high-SNR capacity of the channel. The high-SNR gap between capacity and the achievable rates of the channel inversion and the DC-offset SVD based schemes is also characterized. Finally, the ergodic capacity of the channel is also briefly discussed.
机译:研究了MIMO强度调制信道的容量。发射信号的非负性(强度)对发射信号的预编码提出了挑战,这限制了经典方案在此类信道中的适用性。为了解决此问题,通过使用无预编码方案来开发容量下限。这是通过信道反转或QR分解将MIMO信道转换为一组并行信道来实现的。基于DC偏移SVD的方案的可达到速率也被作为基准。然后,推导容量上限,并显示出其与高信噪比下基于QR分解的方案可达到的速率一致,从而表征了信道的高信噪比容量。还描述了容量和信道反转的可实现速率以及基于DC偏移SVD的方案之间的高SNR差距。最后,还简要讨论了通道的遍历容量。

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