DocumentCode :
1129480
Title :
High-rate full-diversity space-time block codes for three and four transmit antennas
Author :
Basar, E. ; Aygolu, U.
Author_Institution :
Fac. of Electr. & Electron. Eng., Istanbul Tech. Univ., Istanbul
Volume :
3
Issue :
8
fYear :
2009
fDate :
8/1/2009 12:00:00 AM
Firstpage :
1371
Lastpage :
1378
Abstract :
The authors deal with the design of high-rate, full-diversity, low-maximum likelihood (ML) decoding complexity space-time block codes (STBCs) with code rates of 2 and 1.5 complex symbols per channel use for multiple-input multiple output (MIMO) systems employing three and four transmit antennas. The authors fill the empty slots of the existing STBCs from coordinate interleaved orthogonal designs (CIODs) in their transmission matrices by additional symbols and use the conditional ML decoding technique, which significantly reduces the ML decoding complexity of non-orthogonal STBCs while ensuring full-diversity and high coding gain. First, two new schemes with code rates of 2 and 1.5 are proposed for MIMO systems with four transmit antennas. The authors show that our low-complexity rate-2 STBC outperforms the corresponding best STBC recently proposed by Biglieri et al. (2008) for quadrature phase shift keying (QPSK), due to its superior coding gain while our rate-1.5 STBC outperforms the full-diversity quasi-orthogonal STBC (QOSTBC). Then, two STBCs with code rates of 2 and 1.5 are proposed for three transmit antennas, which are shown to outperform the corresponding full-diversity QOSTBC. The authors prove by an information-theoretic analysis that the capacities of new rate-2 STBCs for three and four transmit antennas are much closer to the actual MIMO channel capacity than the capacities of classical OSTBCs and CIODs.
Keywords :
MIMO communication; block codes; channel capacity; interleaved codes; matrix algebra; maximum likelihood decoding; orthogonal codes; quadrature phase shift keying; space-time codes; transmitting antennas; MIMO channel capacity; MIMO systems; coding gain; conditional ML decoding technique; coordinate interleaved orthogonal designs; full-diversity quasiorthogonal STBC; full-diversity space-time block codes; information-theoretic analysis; low-maximum likelihood decoding complexity; multiple-input multiple output systems; nonorthogonal STBC; quadrature phase shift keying; transmission matrices; transmit antennas;
fLanguage :
English
Journal_Title :
Communications, IET
Publisher :
iet
ISSN :
1751-8628
Type :
jour
DOI :
10.1049/iet-com.2008.0697
Filename :
5159693
Link To Document :
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