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A site-specific model of UWB pulse propagation in indoor environment is addressed. The simula-tion utilizes the principles of geometrical optics (GO) for direct and refiected paths’ tracing and the time domain technique for describing the transient electromagnetic field reected from wall, floor, ceiling, and objects. The polarization of the received waveform is determined by taking into account the radiation pattern of the transmitting and receiving antennas, as well as the polarization changes owing to every reflection. The model provides more intrinsical interpretations for UWB pulse propagation in realistic indoor environment.
A site-specific model of UWB pulse propagation in indoor environment is addressed. The simula- tion utilizes the principles of geometrical optics (GO) for direct and refiected paths’ tracing and the time domain technique for describing the transient electromagnetic field reected from wall, floor, ceiling, and objects. The polarization of the received waveform is determined by taking into account the radiation pattern of the transmitting and receiving antennas, as well as the polarization changes due to every reflection. The model provides more intrinsical interpretations for UWB pulse propagation in realistic indoor environment.