DocumentCode :
1311892
Title :
Full Diversity Blind Space-Time Block Codes
Author :
Zhang, Jian-Kang ; Huang, Fei ; Ma, Shuang
Author_Institution :
Dept. of Electr. & Comput. Eng., McMaster Univ., Hamilton, ON, Canada
Volume :
57
Issue :
9
fYear :
2011
Firstpage :
6109
Lastpage :
6133
Abstract :
In this paper, the systematic design of a space-time block code is considered for a wireless communication system with multiple transmitter-receiver antennas and flat fading, in which channel state information is completely unknown. From the viewpoint of blind signal processing, a necessary and sufficient condition is given for the unique identification of the multi-input multi-output flat fading channel and transmitted signal. Then, some novel unique factorizations for a pair of coprime P-ary and Q-ary phase shift keying (PSK) constellations are established. With this and currently available coherent space-time block code designs, a method is developed to systematically construct full diversity blind nonunitary space-time block codes as well as unitary codes by just performing the QR decomposition of the nonunitary codes. It is proved that under a noise-free environment, the code design proposed in this paper can guarantee that the transmitted signals and the channel coefficients are uniquely identified, and that under a complex Gaussian noise environment in which Pth-order and Q th-order statistics (P and Q are co-prime) of the received signals are available, the channel coefficients can be still uniquely identified. In addition, a closed-form solution to determine the channel coefficients is obtained.
Keywords :
MIMO communication; antenna arrays; diversity reception; fading channels; phase shift keying; receiving antennas; signal processing; space-time block codes; statistical analysis; transmitting antennas; MIMO channel; P-ary phase shift keying; PSK constellations; Pth-order statistics; Q-ary phase shift keying; QR decomposition; Qth-order statistics; blind signal processing; channel coefficients; channel state information; complex Gaussian noise environment; full diversity blind space-time block codes; multi-input multi-output flat fading channel; multiple transmitter-receiver antennas; nonunitary codes; unitary codes; wireless communication system; Block codes; Channel estimation; Fading; MIMO; Phase shift keying; Receivers; Transmitters; Blind space-time block codes; blind unique identification; full diversity; maximum likelihood (ML) and GLRT receivers; multi-input multi-output (MIMO) flat fading channel; phase shift keying (PSK) constellation;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2011.2161918
Filename :
6006640
Link To Document :
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