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Capacity Bounds for MIMO Microwave Backhaul Links Affected by Phase Noise

机译:受相位噪声影响的MIMO微波回程链路的容量限制

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摘要

We present bounds and a closed-form high-SNR expression for the capacity of multiple-antenna systems affected by Wiener phase noise. Our results are developed for the scenario where a single oscillator drives all the radio-frequency circuitries at each transceiver (common oscillator setup), the input signal is subject to a peak-power constraint, and the channel matrix is deterministic. This scenario is relevant for line-of-sight multiple-antenna microwave backhaul links with sufficiently small antenna spacing at the transceivers. For the 2x 2 multiple-antenna case, for a Wiener phase-noise process with standard deviation equal to 6^ 0;, and at the medium/high SNR values at which microwave backhaul links operate, the upper bound reported in the paper exhibits a 3dB gap from a lower bound obtained using 64-QAM. Furthermore, in this SNR regime the closed-form high-SNR expression is shown to be accurate.
机译:对于受维纳相位噪声影响的多天线系统的容量,我们给出了边界和封闭形式的高SNR表达式。我们的结果是针对以下情况而开发的:单个振荡器驱动每个收发器上的所有射频电路(公共振荡器设置),输入信号受到峰值功率约束,并且信道矩阵具有确定性。这种情况与收发器处天线间距足够小的视线多天线微波回程链路有关。对于2x 2多天线情况,对于标准偏差等于6 ^ 0的维纳相噪过程,以及在微波回程链路工作的中/高SNR值,本文报道的上限显示出与使用64-QAM获得的下限相距3dB的间隙。此外,在这种SNR体制中,闭合形式的高SNR表达式被证明是准确的。

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