Title :
Theoretical polarized channel model and analysis of XPD and polarization correlation under narrowband macrocell environment
Author :
Wu, Xiaobin ; Guo, Caili ; Feng, Chunyan ; Lin, Lin
Author_Institution :
Beijing Key Lab. of Network Syst. Archit. & Convergence, Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
A theoretical polarized channel model has been proposed by introducing per path polarization characterization based on geometrical depolarization theory. According to the model, polarization array response vector for narrowband macro-cell environment has been derived through intricate geometrical deduction. Mathematical expressions for polarized channel power imbalance XPD (cross polarization discrimination) and polarization correlation have been developed by using VMF (von Mises-Fisher) distribution which characterizes both azimuth and elevation angle. Numerical integration technique is used to analyze the effect of scatterers´ angular characteristics including average azimuth angle, average elevation angle and angular spread on XPD and polarization correlation due to the complexity of geometrical deduction. Our analytical results agree well with previous published XPD and polarization correlation measurements and can be used to predict further XPD and polarization correlation characteristics. Analytical results indicate that both XPD and polarization correlation are highly angle-sensitive.
Keywords :
cellular radio; correlation methods; electromagnetic wave polarisation; electromagnetic wave scattering; geometry; integration; numerical analysis; wireless channels; VMF distribution; XPD analysis; angular scatterering characteristics; average azimuth angle; average elevation angle; cross polarization discrimination; geometrical deduction; geometrical depolarization theory; mathematical expression; narrowband macrocell environment; numerical integration technique; path polarization characterization; polarization array response vector; polarization correlation measurement; polarized channel power imbalance; theoretical polarized channel model; von Mises-Fisher distribution; Antennas; Azimuth; Channel models; Correlation; Macrocell networks; Narrowband; Polarization;
Conference_Titel :
Wireless Personal Multimedia Communications (WPMC), 2012 15th International Symposium on
Conference_Location :
Taipei
Print_ISBN :
978-1-4673-4533-0