Title :
Wireless Polarized-Channel Simulator
Author :
Seok-Chul Kwon ; Stuber, Gordon L.
Author_Institution :
Sch. of Electr. & Comput. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
A wireless polarized-channel simulator is described that can generate a variety of polarized-channel impulse responses. The simulator is useful in the broad research area of polarization-utilizing wireless communication systems. The simulator relies on a geometrically based statistical model (GBSM) for polarized wide-band channels, and consists of three-dimensional (3-D) concentric scattering cylinders about the mobile station. It can be used to model a polarized wide-band cellular down-link channel. To the best of our knowledge, our polarized-channel simulator is the first such simulation model that can generate the time-variant channel impulse response of polarized wide-band wireless fading channels. The simulator utilizes previously reported geometrical theory and reference models for cross-polarization discrimination (XPD), and shows excellent agreement with the reference models, while considering only a finite number of scatterers both for good accuracy and manageable computational complexity.
Keywords :
broadcast channels; cellular radio; fading channels; geometry; polarisation; transient response; 3D concentric scattering cylinders; GBSM; XPD; cross-polarization discrimination; geometrically based statistical model; mobile station; polarization-utilizing wireless communication systems; polarized wideband cellular downlink channel; polarized wideband channels; polarized wideband wireless fading channels; polarized-channel impulse responses; reference models; three-dimensional concentric scattering cylinders; time-variant channel impulse response; wireless polarized-channel simulator; Channel models; Fading; MIMO; Mathematical model; Scattering; Solid modeling; Wireless communication;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2014 IEEE 80th
Conference_Location :
Vancouver, BC
DOI :
10.1109/VTCFall.2014.6966234