DocumentCode :
1522573
Title :
Sample Selection Algorithms for Enhanced MIMO Antenna Measurements Using Mode-Stirred Reverberation Chambers
Author :
Marín-Soler, Adoración ; Grudén, Mathias ; Sánchez-Heredia, Juan D. ; Hallbjörner, Paul ; Martínez-González, Antonio M. ; Rydberg, Anders ; Sánchez-Hernández, David A.
Author_Institution :
EMITE, Murcia, Spain
Volume :
60
Issue :
8
fYear :
2012
Firstpage :
3892
Lastpage :
3900
Abstract :
Mode-stirred reverberation chambers (MSRCs) are a useful tool for measuring several wireless-related MIMO antenna parameters. In a conventional single-cavity MSRC, the emulated fading environment is isotropic and the amplitude of the signal is Rayleigh distributed. Previous contributions have enhanced the emulation capabilities of MSRCs so as to include the ability to emulate Rician- and non-isotropic fading environments. In this contribution, arbitrary amplitude probability density functions (PDF) emulation using a MSRC is presented by selecting parts of the sample set that forms different statistical ensembles. Several algorithms are presented and compared in terms of computation time and power accuracy using simulated as well as measured data from different MSRCs to obtain Rician, on-body and amplitude PDFs of standardized models. The technique is patent-protected by EMITE.
Keywords :
MIMO communication; Rayleigh channels; Rician channels; antenna testing; probability; reverberation chambers; sampling methods; Rayleigh distribution; Rician channel; emulated fading environment; enhanced MIMO antenna measurement; mode stirred reverberation chambers; nonisotropic fading environment; probability density function; sample selection algorithms; wireless related MIMO antenna parameter; Accuracy; Antenna measurements; Cavity resonators; Fading; Genetic algorithms; Rician channels; Algorithms; antenna measurements; fading channels; genetic algorithms;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2012.2201103
Filename :
6204067
Link To Document :
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