DocumentCode :
128039
Title :
Random coupling model for wireless communication channels
Author :
Gradoni, Gabriele ; Xiaoming Chen ; Antonsen, Thomas M. ; Anlage, Steven M. ; Ott, Edward
Author_Institution :
Sch. of Math. Sci., Univ. of Nottingham, Nottingham, UK
fYear :
2014
fDate :
1-4 Sept. 2014
Firstpage :
878
Lastpage :
882
Abstract :
In this paper, we derive an explicit formula for the voltage-to-voltage transfer function of multiple-input multiple-output (MIMO) wireless channels. A statistical model, the random coupling model, is used to develop the open-circuit transfer function of the MIMO channel on a physical basis. The emulation of realistic wireless channels is typically performed through irregular cavities with high losses. In this case, we find that the transfer function takes a simple form involving the free-space impedance matrix of antennas and a fluctuation matrix expressing the wave chaos inside the environment. Monte Carlo simulations of the open-circuit transfer function are performed for MIMO systems up to three antennas in the transmit and receive arrays. In contrast to the common assumption that the MIMO channel fulfill multivariate normality (MVN), the Hans-Zinckler test of the obtained ensembles of the MIMO channel show that the MVN assumption of the MIMO channel tends to be invalid with an increasing number of antennas in the transmitting and receiving arrays, when mutual coupling is present in the arrays. Numerical results indicate that this effect is more pronounced at relatively low frequencies.
Keywords :
MIMO communication; Monte Carlo methods; matrix algebra; transfer functions; wireless channels; Hans-Zinckler test; MIMO channel fulfill multivariate normality; MIMO wireless channels; MVN; Monte Carlo simulations; explicit formula; fluctuation matrix; free-space impedance matrix; irregular cavities; multiple-input multiple-output wireless channels; open-circuit transfer function; random coupling model; statistical model; transmit and receive arrays; voltage-to-voltage transfer function; Antenna arrays; Cavity resonators; Impedance; MIMO; Receiving antennas; Transmitting antennas; Wireless communication; MIMO; losses; multivariate normality; random matrix theory; reverberation chamber; statistical electromagnetics; wave chaos; wireless channel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility (EMC Europe), 2014 International Symposium on
Conference_Location :
Gothenburg
Type :
conf
DOI :
10.1109/EMCEurope.2014.6931027
Filename :
6931027
Link To Document :
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