DocumentCode
2114586
Title
Capacity studies of MIMO channel models based on the geometrical one-ring scattering model
Author
Hogstad, Bjørn Olav ; Patzold, Matthias
Author_Institution
Fac. of Eng. & Sci., Agder Univ. Coll., Norway
Volume
3
fYear
2004
fDate
5-8 Sept. 2004
Firstpage
1613
Abstract
Simulation results for the capacity of multiple-input multiple-output (MIMO) mobile radio channels are presented in this paper. Our MIMO channel simulation model is based on the so-called one-ring scattering model with two antennas at both the base station (BS) and the mobile station (MS) side. For the capacity study, we have investigated the influence of various model parameters, such as the angle spread at the MS, the mean angle of arrival (AOA), and the orientation of the antenna elements. The Doppler effect is also taken into account. Nonisotropic scattering around the MS is modelled by the von Mises distribution. The presented simulation results show an excellent correspondence between the statistical and the time average of the capacity. Furthermore, it turned out that a large distance between the antenna elements is not a guarantee for high capacity. Simulation results are also provided for the level crossing rate (LCR) and the average duration of fades (ADF) of the MIMO channel capacity.
Keywords
Doppler effect; MIMO systems; antenna theory; channel capacity; correlation theory; direction-of-arrival estimation; electromagnetic wave scattering; mobile radio; ADF; AOA; Doppler effect; LCR; MIMO channel simulation model; angle of arrival; antenna elements; average duration of fades; geometrical one-ring scattering model; level crossing rate; mobile radio channel capacity; multiple-input multiple-output; nonisotropic scattering; space-time correlation; von Mises distribution; Channel capacity; Educational institutions; Fading; Land mobile radio; MIMO; Mobile antennas; Receiving antennas; Scattering; Solid modeling; Stochastic processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Personal, Indoor and Mobile Radio Communications, 2004. PIMRC 2004. 15th IEEE International Symposium on
Print_ISBN
0-7803-8523-3
Type
conf
DOI
10.1109/PIMRC.2004.1368272
Filename
1368272
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