Title :
An accurate and efficient method based on ray-tracing for the prediction of local flat-fading statistics in picocell radio channels
Author :
Torres, Rafael P. ; Loredo, Susana ; Valle, Luis ; Domingo, Marta
Author_Institution :
Dept. of Commun. Eng., Cantabria Univ., Santander, Spain
fDate :
2/1/2001 12:00:00 AM
Abstract :
Ray-tracing techniques have proven to be very useful for the analysis and design of wireless systems both in urban microcells and in indoor picocells. At present, the optimization of these techniques enables not only the signal mean level but also the local statistics to be estimated accurately, which is of great practical importance. A wide range of comparisons between measurements and simulations confirming this have been carried out by the authors, and some examples are presented. The most interesting contribution of this paper is that starting from the signal information at one single point, obtained using ray-tracing techniques, it is possible to estimate the signal statistics in a local area of that point. This possibility substantially reduces the local statistics calculation time, confirming the idea that an efficient site specific channel model might be feasible. Finally, it is also shown that ray-tracing techniques are able to accurately estimate the first- and second-order statistics in those environments where the Clarke (1968) or isotropic scattering model is not applicable
Keywords :
fading channels; indoor radio; multipath channels; picocellular radio; radiowave propagation; ray tracing; statistical analysis; GO/UTD; channel model; first-order statistics; indoor picocells; local flat-fading statistics prediction; local statistics calculation time reduction; measurements; multipath fading statistics; optimization; picocell radio channels; radiowave propagation; ray-tracing; second-order statistics; signal information; signal mean level; signal statistic; simulations; tunnels; urban microcells; wireless systems analysis; wireless systems design; Bit error rate; Diffraction; Microcell networks; Narrowband; Ray tracing; Rician channels; Scattering; Statistics; Urban planning; Wireless communication;
Journal_Title :
Selected Areas in Communications, IEEE Journal on