DocumentCode :
429936
Title :
Capacity for spatial-temporal correlated MIMO fading channel
Author :
Maharaj, B.T. ; Linde, L.P.
Author_Institution :
Pretoria Univ.
Volume :
1
fYear :
2004
fDate :
17-17 Sept. 2004
Firstpage :
269
Abstract :
For a single channel Shannon´s classical capacity formula predicts a capacity increase of 1 bit/cycle for every 3 dB increase in signal to noise ratio (SNR). Consequently in multiple antenna arrays, the increase in capacity can be in the order of almost n more bits/cycle for each 3 dB increase in SNR. This tremendous gain in capacity exhibited by MIMO channels over single antenna systems illustrates the enormous potential in wireless communications systems. This paper provides an analysis of multi-element antenna systems in a wireless channel. A geometric model incorporating local scatterers around the fixed user is presented. This space-time model considers non-isotropic scattering using the von Mises pdf at the user. This space-time cross correlation function includes some key elements, such as antenna element spacing, degree of scattering, angle of arrival at user and array configuration in MIMO channels. The capacity of the MIMO fading channel with varying; number of antenna elements, the degree of isotropic scattering at receiver and the spacing between the antenna elements are investigated and presented for the chosen model
Keywords :
MIMO systems; antenna arrays; antenna theory; channel capacity; correlation methods; electromagnetic wave scattering; fading channels; statistical distributions; SNR; Shannon classical capacity formula; angle of arrival; antenna element spacing; antenna elements; array configuration; fixed user; geometric model; isotropic scattering; local scatterers; multiple antenna arrays; nonisotropic scattering; signal to noise ratio; single antenna systems; single channel capacity increase; space-time cross correlation function; space-time model; spatial-temporal correlated MIMO fading channel capacity; von Mises pdf; wireless channel multi-element antenna systems; wireless communications systems; Antenna arrays; Fading; MIMO; Receiving antennas; Scattering; Signal to noise ratio; Solid modeling; Transmitters; Transmitting antennas; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
AFRICON, 2004. 7th AFRICON Conference in Africa
Conference_Location :
Gaborone
Print_ISBN :
0-7803-8605-1
Type :
conf
DOI :
10.1109/AFRICON.2004.1406672
Filename :
1406672
Link To Document :
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