Title :
Coded Unitary Space–Time Modulation With Iterative Decoding: Error Performance and Mapping Design
Author :
Tran, Nghi H. ; Nguyen, Ha H. ; Le-Ngoc, Tho
Author_Institution :
Dept. of Electr. Eng., Saskatchewan Univ., Saskatoon, Sask.
fDate :
4/1/2007 12:00:00 AM
Abstract :
This paper studies the bit error probability of coded unitary space-time modulation with iterative decoding where neither the transmitter nor the receiver knows the channel fading coefficients. The tight error bound with respect to the asymptotic performance is first analytically derived for any given unitary constellation and mapping rule. Design criteria regarding the choice of unitary constellation and mapping are then established. Furthermore, using the unitary constellation obtained from orthogonal design with quadrature phase-shift keying (QPSK or 4-PSK) and 8-PSK, two different mapping rules are proposed. The first mapping rule gives the most suitable mapping for systems that do not implement iterative processing, which is similar to a Gray mapping in coherent channels. The second mapping rule yields the best mapping for systems with iterative decoding. In particular, analytical and simulation results show that with the proposed mappings of the unitary constellations obtained from orthogonal designs, the asymptotic error performance of the iterative systems can closely approach a lower bound which is applicable to any unitary constellation and mapping
Keywords :
Gray codes; error statistics; iterative decoding; modulation coding; quadrature phase shift keying; space-time codes; Gray mapping; QPSK; bit error probability; coded unitary space-time modulation; iterative decoding; iterative processing; mapping design; quadrature phase-shift keying; unitary constellation; Analytical models; Error probability; Fading; Iterative decoding; Iterative methods; Modulation coding; Performance analysis; Phase shift keying; Quadrature phase shift keying; Transmitters; Bit-interleaved coded modulation (BICM); error bound; error performance; iterative decoding; signal mapping; space–time modulation; unitary constellation;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2007.894092