DocumentCode :
2387903
Title :
Space-time block coding with symbol-wise decoding for polynomial phase modulated signals
Author :
Granados, Omar ; Andrian, Jean
Author_Institution :
Dept. of Electr. & Comput. Eng., Florida Int. Univ., Miami, FL, USA
fYear :
2011
fDate :
13-15 April 2011
Firstpage :
1
Lastpage :
7
Abstract :
Polynomial phase modulation (PPM) has been shown to provide improved error rate performance with respect to conventional modulation formats under additive white Gaussian noise and fading channels in single-input single-output (SISO) communication systems. In this paper, we evaluate the performance of systems with two and four transmit antennas using PPM as the modulation format. In both cases we employ full-rate space-time block codes in order to take advantage of the multipath channel. For two transmit antennas, we use the orthogonal space-time block code (OSTBC) proposed by Alamouti and perform symbol-wise decoding by estimating the phase coefficients of the PPM signal using three different methods: maximum-likelihood (ML), sub-optimal ML (S-ML), and the high-order ambiguity function (HAF). In the case of four transmit antennas, we employ the full-rate quasi-OSTBC (QOSTBC) proposed by Jafarkhani. Then, in order to perform low-complexity symbol-wise decoding, we find a decoupling matrix for the Jafarkhani scheme and apply a technique known as quasi-zero forcing (ZF). After that, the PPM signal parameters are estimated just as in the two-antenna case using ML, S-ML, and HAF. We show that the proposed systems using PPM and ML outperform OSTBC and ZF-QOSTBC using M-ary PSK as their modulation format.
Keywords :
Gaussian noise; maximum likelihood estimation; phase modulation; polynomials; space-time block codes; transmitting antennas; Gaussian noise; Jafarkhani scheme; PPM signal; SISO communication system; ZF; antennas; fading channel; full-rate quasi-OSTBC; high-order ambiguity function; low-complexity symbol-wise decoding; maximum likelihood estimation; polynomial phase modulated signal; quasi-zero forcing; single-input single-output communication system; space-time block coding; suboptimal ML; symbol-wise decoding; transmitting antennas; Bit error rate; Maximum likelihood decoding; Maximum likelihood estimation; Polynomials; Receivers; Transmitting antennas; Polynomial phase signals; space-time coding; symbol-wise decoding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Telecommunications Symposium (WTS), 2011
Conference_Location :
New York City, NY
ISSN :
1934-5070
Print_ISBN :
978-1-4577-0162-7
Type :
conf
DOI :
10.1109/WTS.2011.5960851
Filename :
5960851
Link To Document :
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