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Analysis of the Local Quasi-Stationarity of Measured Dual-Polarized MIMO Channels

机译:测得的双极化MIMO信道的局部拟平稳性分析

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It is common practice in wireless communications to assume strict or wide-sense stationarity of the wireless channel in time and frequency. While this approximation has some physical justification, it is only valid inside certain time–frequency regions. This paper presents an elaborate characterization of the non-stationarity of wireless dual-polarized (DP) channels in time. The evaluation is based on urban macrocell measurements performed at 2.53 GHz. To define local quasi-stationarity (LQS) regions, i.e., regions in which the change of certain channel statistics is deemed insignificant, we resort to the performance degradation of selected algorithms specific to channel estimation and beamforming. Additionally, we compare our results to commonly used measures in the literature. We find that the polarization, the antenna spacing, and the opening angle of the antennas into the propagation channel can strongly influence the non-stationarity of the observed channel. The obtained LQS regions can be of significant size, i.e., several meters; thus, the reuse of channel statistics over large distances is meaningful (in an average sense) for the considered correlation-based algorithms. Furthermore, we conclude that, from a system perspective, a proper non-stationarity analysis should be based on the considered algorithm.
机译:在无线通信中,通常的做法是假设无线信道在时间和频率上具有严格或广义的平稳性。尽管此近似值有一定的物理依据,但仅在某些时频范围内有效。本文对无线双极化(DP)信道的非平稳性进行了及时的详细描述。该评估基于在2.53 GHz下执行的城市宏小区测量。为了定义局部准平稳性(LQS)区域,即某些信道统计数据的变化被认为不重要的区域,我们诉诸于特定于信道估计和波束成形的所选算法的性能下降。此外,我们将我们的结果与文献中常用的方法进行比较。我们发现极化,天线间距以及天线进入传播通道的开口角度会严重影响观测通道的非平稳性。所获得的LQS区域可以具有很大的尺寸,即几米。因此,对于考虑的基于相关性的算法,在大距离上重用信道统计信息是有意义的(在平均意义上)。此外,我们得出结论,从系统角度来看,应基于所考虑的算法进行适当的非平稳性分析。

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