DocumentCode :
1072425
Title :
On the design of algebraic space-time codes for MIMO block-fading channels
Author :
El Gamal, Hesham ; Hammons, A. Roger, Jr.
Author_Institution :
Dept. of Electr. Eng., Ohio State Univ., Columbus, OH, USA
Volume :
49
Issue :
1
fYear :
2003
Firstpage :
151
Lastpage :
163
Abstract :
The availability of multiple transmit antennas allows for two-dimensional channel codes that exploit the spatial transmit diversity. These codes were referred to as space-time codes by Tarokh et al. (see ibid., vol.44, p.744-765, Mar. 1998) Most prior works on space-time code design have considered quasi-static fading channels. We extend our earlier work on algebraic space-time coding to block-fading channels. First, we present baseband design criteria for space-time codes in multi-input multi-output (MIMO) block-fading channels that encompass as special cases the quasi-static and fast fading design rules. The diversity advantage baseband criterion is then translated into binary rank criteria for phase shift keying (PSK) modulated codes. Based on these binary criteria, we construct algebraic space-time codes that exploit the spatial and temporal diversity available in MIMO block-fading channels. We also introduce the notion of universal space-time codes as a generalization of the smart-greedy design rule. As a part of this work, we establish another result that is important in its own right: we generalize the full diversity space-time code constructions for quasi-static channels to allow for higher rate codes at the expense of minimal reductions in the diversity advantage. Finally, we present simulation results that demonstrate the excellent performance of the proposed codes.
Keywords :
MIMO systems; algebraic codes; channel coding; diversity reception; fading channels; phase shift keying; space-time codes; 2D channel codes; MIMO block-fading channels; PSK modulated codes; algebraic space-time codes design; baseband design; binary rank criteria; diversity advantage baseband criterion; fast fading; multi-input multi-output channels; multiple transmit antennas; phase shift keying; quasi-static fading channels; simulation results; smart-greedy design rule; spatial diversity; spatial transmit diversity; temporal diversity; two-dimensional channel codes; universal space-time codes; Baseband; Delay; Fading; Interleaved codes; MIMO; Modulation coding; Phase modulation; Phase shift keying; Transmitting antennas; Wireless communication;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2002.806116
Filename :
1159768
Link To Document :
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