DocumentCode :
1437810
Title :
Optimum Receiver Design and Performance Analysis of Arbitrarily Correlated Rician Fading MIMO Channels With Imperfect Channel State Information
Author :
Taricco, Giorgio
Author_Institution :
Politec. di Torino (DELEN), Torino, Italy
Volume :
56
Issue :
3
fYear :
2010
fDate :
3/1/2010 12:00:00 AM
Firstpage :
1114
Lastpage :
1134
Abstract :
The error performance of different types of receivers over an arbitrarily correlated Rician fading MIMO channel is assessed by evaluating the decision metric and the pairwise error probability. The differences are in the way channel state information at the receiver (CSIR) is recovered. We consider: i) a genieaided receiver, based on the perfect knowledge of CSIR; ii) a mismatched receiver, based on the use of pilot-aided (imperfect) CSIR in the perfect-CSIR decision metric; iii) an optimum receiver, based on perfect channel distribution information at the receiver (CDIR), which performs jointly channel and data estimation. In this paper, the decision metric of the optimum receiver is derived, and an iterative algorithm is proposed to calculate it for sequential decoding schemes. The complexity of this iterative algorithm is analyzed and compare against the complexity of the mismatched receiver. Closed-form expressions are given for the pairwise error probabilities (PEPs) of the three receivers with arbitrarily correlated Rician fading. These expressions are further processed to obtain the asymptotic (in the SNR) PEPs, the diversity order, and the asymptotic power losses. Numerical results are presented to support the validity of this analysis and to assess the impact of power efficiency and CDIR estimation errors on the PEP versus the ¿b/N0 ratio.
Keywords :
MIMO communication; Rician channels; channel estimation; error statistics; iterative methods; sequential decoding; arbitrarily correlated Rician fading MIMO channels; channel estimation; data estimation; decision metric; imperfect channel state information; iterative algorithm; optimum receiver design; pairwise error probability; sequential decoding schemes; Algorithm design and analysis; Channel state information; Closed-form solution; Estimation error; Iterative algorithms; Iterative decoding; MIMO; Pairwise error probability; Performance analysis; Rician channels; Multiple-input multiple output (MIMO) channels; arbitrarily correlated fading channels; channel estimation errors; maximum-likelihood receivers; pilot symbol detection;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2009.2039042
Filename :
5429130
Link To Document :
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