DocumentCode :
1388398
Title :
Maximum Rate of Unitary-Weight, Single-Symbol Decodable STBCs
Author :
Karmakar, Sanjay ; Srinath, K. Pavan ; Rajan, B. Sundar
Author_Institution :
Indian Inst. of Sci., Bangalore, India
Volume :
57
Issue :
12
fYear :
2011
Firstpage :
7972
Lastpage :
7981
Abstract :
It is well known that the space-time block codes (STBCs) from complex orthogonal designs (CODs) are single-symbol decodable/symbol-by-symbol decodable (SSD). The weight matrices of the square CODs are all unitary and obtainable from the unitary matrix representations of Clifford Algebras when the number of transmit antennas n is a power of 2. The rate of the square CODs for n = 2a has been shown to be [(a+1)/(2a)] complex symbols per channel use. However, SSD codes having unitary-weight matrices need not be CODs, an example being the minimum-decoding-complexity STBCs from quasi-orthogonal designs. In this paper, an achievable upper bound on the rate of any unitary-weight SSD code is derived to be [(a)/(2a-1)] complex symbols per channel use for 2a antennas, and this upper bound is larger than that of the CODs. By way of code construction, the interrelationship between the weight matrices of unitary-weight SSD codes is studied. Also, the coding gain of all unitary-weight SSD codes is proved to be the same for QAM constellations and conditions that are necessary for unitary-weight SSD codes to achieve full transmit diversity and optimum coding gain are presented.
Keywords :
decoding; diversity reception; matrix algebra; quadrature amplitude modulation; space-time block codes; transmitting antennas; Clifford algebras; QAM; SSD codes; code construction; complex orthogonal designs; full transmit diversity; minimum-decoding-complexity; optimum coding gain; quasi-orthogonal designs; single-symbol decodable STBC; space-time block codes; symbol-by-symbol decodable; transmit antennas; unitary matrix representations; unitary-weight SSD code; unitary-weight maximum rate; Encoding; Maximum likelihood decoding; Quadrature amplitude modulation; Symmetric matrices; Transmitting antennas; Upper bound; Anticommuting matrices; complex orthogonal designs; minimum-decoding-complexity codes; quasi-orthogonal designs; space-time block codes;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2011.2170106
Filename :
6094264
Link To Document :
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