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A Comprehensive Standardized Model for Ultrawideband Propagation Channels

IEEE Transactions on Antennas and Propagation · 2006 · Vol. 54(11) · pp. 3151–3166
Andreas F. MolischDajana CassioliChia‐Chin ChongS. EmamiA. FortB. KannanJohan KåredalJ. KunischH.G. SchantzKazimierz SiwiakMoe Z. Win

Abstract

<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> A comprehensive statistical model is described for ultrawideband (UWB) propagation channels that is valid for a frequency range from 3–10 GHz. It is based on measurements and simulations in the following environments: residential indoor, office indoor, builtup outdoor, industrial indoor, farm environments, and body area networks. The model is independent of the used antennas. It includes the frequency dependence of the path gain as well as several generalizations of the Saleh–Valenzuela model, like mixed Poisson times of arrival and delay-dependent cluster decay constants. A separate model is specified for the frequency range below 1 GHz. The model can thus be used for realistic performance assessment of UWB systems. It was accepted by the IEEE 802.15.4a Task Group as standard model for evaluation of UWB system proposals. This paper also presents a critical assessment of the applicability of the model and possible generalizations and improvements. </para>

Ultra-Wideband Communications TechnologyMillimeter-Wave Propagation and ModelingAntenna Design and AnalysisComputer scienceRange (aeronautics)Poisson distributionPath lossElectronic engineeringTopology (electrical circuits)TelecommunicationsElectrical engineeringMathematicsStatistics
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References
Ultrawideband Propagation Channels-Theory, Measurement, and Modeling
IEEE Transactions on Vehicular Technology · 2005 · 747 citations
The ultra-wide bandwidth indoor channel: from statistical model to simulations
IEEE Journal on Selected Areas in Communications · 2002 · 944 citations
A Statistical Model for Indoor Multipath Propagation
IEEE Journal on Selected Areas in Communications · 1987 · 3,356 citations
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