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The ultra-wide bandwidth indoor channel: from statistical model to simulations

机译:超宽带室内通道:从统计模型到仿真

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摘要

We establish a statistical model for the ultra-wide bandwidth (UWB) indoor channel based on an extensive measurement campaign in a typical modern office building with 2-ns delay resolution. The approach is based on the investigation of the statistical properties of the multipath profiles measured in different rooms over a finely spaced measurement grid. The analysis leads to the formulation of a stochastic tapped-delay-line (STDL) model of the UWB indoor channel. The averaged power delay profile can be well-modeled by a single exponential decay with a statistically distributed decay constant. The small-scale statistics of path energy gains follow Gamma distributions whose parameters m are truncated Gaussian variables with mean values and standard deviations decreasing with delay. The total received energy experiences a lognormal shadowing around the mean energy given by the path-loss power law. We also find that the correlation between multipath components is negligible. Finally, we propose an implementation of the STDL model and give a comparison between the experimental data and the simulation results.
机译:我们基于具有2ns延迟分辨率的典型现代化办公大楼中的广泛测量活动,建立了超宽带(UWB)室内信道的统计模型。该方法基于对在精细间隔的测量网格上的不同房间中测量的多径轮廓的统计属性的调查。通过分析得出了UWB室内信道的随机抽头延迟线(STDL)模型的公式。平均功率延迟曲线可以通过具有统计分布的衰减常数的单个指数衰减来很好地建模。路径能量增益的小规模统计遵循Gamma分布,其参数m为截断的高斯变量,其平均值和标准偏差随延迟而减小。总接收能量在路径损耗幂定律给出的平均能量周围经历对数正态阴影。我们还发现,多径分量之间的相关性可以忽略不计。最后,我们提出了STDL模型的实现,并给出了实验数据和仿真结果之间的比较。

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