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

IEEE Journal on Selected Areas in Communications · 2002 · Vol. 20(6) · pp. 1247–1257
Dajana CassioliMoe Z. WinAndreas F. Molisch

Abstract

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.

Ultra-Wideband Communications TechnologyMillimeter-Wave Propagation and ModelingAntenna Design and AnalysisMultipath propagationDelay spreadBandwidth (computing)Path lossComputer sciencePower delay profileGaussianLog-normal distributionStandard deviationExponential function
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References
The indoor radio propagation channel
Proceedings of the IEEE · 1993 · 1,724 citations
An empirically based path loss model for wireless channels in suburban environments
IEEE Journal on Selected Areas in Communications · 1999 · 1,170 citations
A Statistical Model for Indoor Multipath Propagation
IEEE Journal on Selected Areas in Communications · 1987 · 3,356 citations
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