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Characteristics of Short-Term Phase Noise of MIMO Channel Sounding and Its Effect on Capacity Estimation

机译:MIMO信道探测的短期相位噪声特性及其对容量估计的影响

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Multi-input–multi-output (MIMO) radio channel sounders commonly employ a time-division-multiplexing (TDM) technique to switch between transmit (TX) and receive (RX) antennas. The TDM-based switching enables very cost-effective solutions. Nevertheless, it can cause measurement errors due to phase noise in the local oscillators. In typical MIMO applications with a relatively small number of TX and RX antennas, the measurement cycle for a single snapshot of a MIMO radio channel is so short that independent or white Gaussian noise samples cannot be assumed. Indeed, the characteristics of the phase noise depend on the observing-time scale and the local oscillator design in the TX and the RX. In free-running systems, in which the local oscillators of the TX and the RX employ their own clocks, the properties of the phase noise have a strong dependence on the scale of the observing time. In particular, the short-term characteristics of the phase noise have not been considered in literature regarding MIMO measurements. In this paper, the characteristics of the short-term phase noise in time-switched MIMO radio channel measurements are disclosed. We show also that the Allan deviation, which commonly characterizes the frequency stability of the local oscillators, does not apply well to the short-term scale. Instead, an autoregressive model that is well suited for modeling of correlated noise is applied to characterize the short-term behavior of the phase noise. Finally, the effect of short-term phase noise on the estimation of MIMO channel capacity is analyzed. We also derive an upper bound for the ergodic channel capacity and show that it is dependent on the distribution of the largest eigenvalue of the noise covariance matrix. The results reveal that the effect of short-term phase noise always overestimates MIMO channel capacity.
机译:多输入多输出(MIMO)无线电信道探测仪通常采用时分复用(TDM)技术在发射(TX)和接收(RX)天线之间切换。基于TDM的交换可实现非常经济高效的解决方案。然而,由于本地振荡器中的相位噪声,它可能导致测量误差。在具有相对较少数量的TX和RX天线的典型MIMO应用中,MIMO无线电信道的单个快照的测量周期非常短,以至于无法假设独立的或高斯白噪声样本。实际上,相位噪声的特性取决于观察时间尺度以及TX和RX中的本地振荡器设计。在自由运行的系统中,TX和RX的本地振荡器使用自己的时钟,相位噪声的属性与观测时间的大小有很大关系。特别地,在关于MIMO测量的文献中没有考虑相位噪声的短期特性。在本文中,公开了在时间切换的MIMO无线电信道测量中的短期相位噪声的特性。我们还表明,通常表征本地振荡器频率稳定性的Allan偏差不适用于短期规模。取而代之的是,使用非常适合于相关噪声建模的自回归模型来表征相位噪声的短期行为。最后,分析了短期相位噪声对MIMO信道容量估计的影响。我们还推导了遍历信道容量的上限,并表明它取决于噪声协方差矩阵的最大特征值的分布。结果表明,短期相位噪声的影响始终高估了MIMO信道容量。

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