Title :
A wall imperfection channel model for signal level prediction and its impact on smart antenna systems for indoor infrastructure WLAN
Author :
Nasr, Karim Medhat ; Costen, Fumie ; Barton, Stephen K.
Author_Institution :
Sch. of Comput. Sci., Univ. of Manchester, UK
Abstract :
This paper presents a novel approach for the estimation of the local average signal level in an indoor environment based on a wall imperfection model. A ray-tracing tool based on the method of images with angular information, is first used to estimate the distribution of field strength (or coverage) in an arbitrary environment. The concept of spatial sampling is highlighted. The wall imperfection model is then introduced to study the sensitivity of the received signal level at an arbitrary location to imperfect wall positioning and electromagnetic material properties. An alternative approach to estimate the local mean signal level at a particular point is presented based on the wall imperfection model to reduce the computation time. The impact of the wall imperfection model on the patterns of a smart antenna system serving multiple users in an infrastructure WLAN is studied.
Keywords :
adaptive antenna arrays; antenna radiation patterns; antenna theory; array signal processing; electromagnetic fields; image sampling; indoor radio; ray tracing; space division multiple access; wireless LAN; wireless channels; SDMA; antenna pattern; arbitrary environment; channel modeling; electromagnetic material property; field strength distribution; imaging method; indoor environment; infrastructure WLAN; ray-tracing tool; sensitivity; signal level prediction; smart antenna system; space division multiple access; spatial sampling; wall imperfection model; wireless local area network; Delay; Direction of arrival estimation; Electromagnetic modeling; Indoor environments; Material properties; Multiaccess communication; Predictive models; Ray tracing; Transmitters; Wireless LAN; Smart antennas; WLAN; space division multiple access (SDMA); spatial indoor channel modeling; wall imperfections;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2005.858593