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Experimental characteristics of indoor wideband MIMO radio channels and their impact on stochastic modelling

机译:室内宽带mImO无线电信道的实验特性及其对随机建模的影响

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摘要

We compare two methods for estimation of path-component spreads in bi-azimuth and delay, namely the clustering approach and the density approach, in indoor environments. Monte Carlo simulations reveal possible shortcomings of the clustering approach. Published estimates of component spreads in delay, azimuth of departure and azimuth of arrival obtained with the clustering approach are reviewed and contrasted with estimates gathered using the density approach. A detailed study of these experimental data, aided with the insight gained from the simulation results, leads to the conjecture that in some cases the estimated spreads computed with the clustering approach are too large. The settings of the path component spreads of two widely used models including bi-azimuth delay dispersion, namely the Winner II Model and the 802.11 Tgn Model are revisited based on these findings. The investigations stress the obvious, but apparently sometimes forgotten, importance of validating the behavior and performance of channel parameter estimation techniques before using these tools to extract empirical information from measurement data.
机译:我们比较了两种在室内环境中估计方位角和延迟路径分量扩展的方法,即聚类方法和密度方法。蒙特卡洛模拟揭示了聚类方法的可能缺点。审查了使用聚类方法获得的延迟,出发方位角和到达方位角中的成分扩散的已发布估计,并将其与使用密度方法收集的估计值进行了对比。对这些实验数据的详细研究,再加上从模拟结果中获得的见识,导致人们猜测,在某些情况下,使用聚类方法计算出的估计价差太大。基于这些发现,重新讨论了包括双方位角延迟色散在内的两个广泛使用的模型(即Winner II模型和802.11 Tgn模型)的路径分量扩展的设置。这些调查强调了在使用这些工具从测量数据中提取经验信息之前,验证信道参数估计技术的行为和性能的明显但显然有时被遗忘的重要性。

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