Title :
Trellis Coded Space-Shift Keying Modulation
Author :
Yilmaz, G. ; Basar, E. ; Aygolu, U.
Author_Institution :
Dept. of Electron., Inf. & Bioeng. (DEIB), Politec. di Milano, Milan, Italy
Abstract :
A new multiple-input multiple-output (MIMO) transmission scheme namedtextit{ trellis coded space-shift keying} (TC-SSK) is proposed in this paper. This scheme is obtained by the combination of trellis coding and SSK for a given spectral efficiency, number of transmit antennas and trellis states. A soft decision Viterbi decoder is employed at the receiver to decode the transmitted SSK symbols. Using systematic methods, new TC-SSK schemes are obtained for 1 and 2 bits/s/Hz spectral efficiencies. An upper bound for the pairwise error probability (PEP) of the TC-SSK scheme is calculated for quasi-static Rayleigh fading channels. Computer simulation results show that the proposed TC-SSK schemes achieve significantly better error performance than the uncoded SSK, and the theoretical error probability curves are in close match with the computer simulation results. Furthermore, TC-SSK provides an attractive trade- off between complexity and performance compared to the spatial modulation with trellis coding.
Keywords :
MIMO communication; Rayleigh channels; Viterbi decoding; error statistics; trellis coded modulation; MIMO transmission scheme; PEP; TC-SSK scheme; error performance; multiple-input multiple-output transmission scheme; pairwise error probability; quasistatic Rayleigh fading channels; soft decision Viterbi decoder; theoretical error probability curves; trellis coded space-shift keying modulation; Bit error rate; Computer simulation; Convolutional codes; Decoding; MIMO; Signal to noise ratio; Transmitting antennas;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2014 IEEE 79th
Conference_Location :
Seoul
DOI :
10.1109/VTCSpring.2014.7023131