Title :
Polarized-mimo capacity analysis in street-canyon using 3D ray-tracing model
Author :
Shoshan, Koby ; Amrani, Ofer
Author_Institution :
Electr. Eng. Sch., Tel-Aviv Univ., Tel Aviv, Israel
Abstract :
Polarization characteristic of wireless signals did not attract much attention yet as a dimension that can be exploited for achieving diversity in the full 3D reality. Although spatial-MIMO (S-MIMO) systems have been studied extensively during the past few years, the polarized-MIMO (P-MIMO) attribute of antennas was not addressed similarly. The current analysis aims at studying the P-MIMO potential for a street-canyon scenario and was performed using a P-MIMO 3D channel model based on the ray-tracing technique. It is shown that relative to degenerate polarization-dimension techniques (such as SISO and SIMO) there is a significant capacity improvement when using several polarizations concurrently. Some practical observations are given with respect to the base station antenna orientation and floor-to-walls reflection importance. These results highlight the importance of polarization in MIMO channel models and the potential of P-MIMO implementation in future broadband wireless systems.
Keywords :
MIMO communication; antennas; polarisation; ray tracing; wireless channels; 3D channel model; 3D ray-tracing; base station antenna orientation; floor-to-walls reflection; polarization dimension; polarized-MIMO capacity analysis; spatial-MIMO systems; street-canyon; wireless signals; Image analysis; MIMO; Performance analysis; Polarization; Power distribution; Ray tracing; Receiving antennas; Signal analysis; Stochastic processes; Transmitting antennas; Capacity; MIMO; Polarization; Ray-Tracing; Street-Canyon;
Conference_Titel :
Electrical and Electronics Engineers in Israel, 2008. IEEEI 2008. IEEE 25th Convention of
Conference_Location :
Eilat
Print_ISBN :
978-1-4244-2481-8
Electronic_ISBN :
978-1-4244-2482-5
DOI :
10.1109/EEEI.2008.4736633