DocumentCode
1489831
Title
Analysis and compensation of i/q imbalance in MIMO transmit-receive diversity systems
Author
Qi, Jian ; Aïssa, Sonia
Author_Institution
INRS-EMT, Univ. of Quebec, Montreal, QC, Canada
Volume
58
Issue
5
fYear
2010
fDate
5/1/2010 12:00:00 AM
Firstpage
1546
Lastpage
1556
Abstract
In wireless communication systems, all in-phase and quadrature-phase (I/Q) signal processing receivers face the problem of I/Q imbalance. In this paper, we investigate the effect of I/Q imbalance on the performance of multiple-input multiple-output (MIMO) maximal ratio combining (MRC) systems that perform the combining at the radio frequency (RF) level, thereby requiring only one RF chain. In order to perform the MIMO MRC, we propose a channel estimation algorithm that accounts for the I/Q imbalance. Moreover, a compensation algorithm for the I/Q imbalance in MIMO MRC systems is proposed, which first employs the least-squares (LS) rule to estimate the coefficients of the channel gain matrix, beamforming and combining weight vectors, and parameters of I/Q imbalance jointly, and then makes use of the received signal together with its conjugation to detect the transmitted signal. The performance of the MIMO MRC system under study is evaluated in terms of average symbol error probability (SEP), outage probability and ergodic capacity, which are derived considering transmission over Rayleigh fading channels. Numerical results are provided and show that the proposed compensation algorithm can efficiently mitigate the effect of I/Q imbalance.
Keywords
MIMO communication; Rayleigh channels; array signal processing; channel estimation; diversity reception; I/Q imbalance; MIMO MRC systems; MIMO transmit-receive diversity systems; Rayleigh fading channels; beamforming; channel estimation; compensation algorithm; in-phase and quadrature-phase; maximal ratio combining; multiple-input multiple- output; signal processing receivers; symbol error probability; wireless communication systems; Array signal processing; Channel estimation; Diversity reception; Face; MIMO; Radio frequency; Receivers; Signal processing; Signal processing algorithms; Wireless communication; Multiple-input multiple-output (MIMO), maximal ratio combining (MRC), in-phase and quadrature-phase (I/Q) imbalance, channel estimation, compensation;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2010.05.090225
Filename
5464254
Link To Document