Title :
Polarization projection for 3D geometry-based stochastic channel model
Author :
Lihua Pang ; Yang Zhang ; Fengkui Gong ; Anyi Wang ; Liyuan Xiao ; Xiao Liang ; Qiaofeng Wang ; Jiandong Li
Author_Institution :
Sch. of Inf. Eng., Xi´an Univ. of Sci. & Technol., Xi´an, China
Abstract :
Comprehensive radiation characteristics of polarized antenna are crucial in creating practical channel coefficients for next generation wireless communication system designs. Being currently supported within 3D geometry-based stochastic channel models (GSCM), field patterns are technically obtained by chamber measurement (or by its best fitting). However, in some channel related performance analysis scenarios, design insight can be crystallized better by starting the derivations with theoretical co-polarization and cross-polarization components. Specifically, these two components are mathematically linked with field patterns through the proposed polarization projection algorithm. In this manuscript, we focus on revealing the transformation criterion of polarization states between the antenna plane and the propagation plane. In practice, it makes retrieving the field patterns by electromagnetic computation possible. Meanwhile, the impact imposed by distinct antenna orientations is geometrically illustrated and consequently incorporated into the proposed algorithm. This will further facilitate flexible performance evaluation of related radio transmission technologies. Our conclusions are verified by the closed-form expression of the dipole field pattern (via an analytical approach) and by chamber measurement results. Moreover, we find that its 2D degenerative case is aligned with the definitions in 3rd generation partnership project (3GPP) technical report 25.996. The most obvious benefit of the proposed algorithm is to significantly reduce the cost on generating channel coefficients in GSCM simulation.
Keywords :
antenna radiation patterns; dipole antennas; geometry; 3D geometry-based stochastic channel models; 3GPP; 3rd generation partnership project; chamber measurement; closed-form expression; comprehensive radiation characteristics; cross-polarization components; dipole field pattern; electromagnetic computation; next generation wireless communication system designs; polarization projection; polarization projection algorithm; polarized antenna; Antenna arrays; Antenna measurements; Antenna radiation patterns; Channel models; Three-dimensional displays; Wireless communication; 3D geometry-based stochastic channel model; antenna orientation; chamber measurement; channel simulation; dipole; polarization; radiation characteristics;
Journal_Title :
Communications, China
DOI :
10.1109/CC.2015.7315058