Title :
Spatially Modulated Orthogonal Space-Time Block Codes with Non-Vanishing Determinants
Author :
Minh-Tuan Le ; Vu-Duc Ngo ; Hong-Anh Mai ; Xuan Nam Tran ; Di Renzo, Marco
Author_Institution :
Hanoi Dept. of Sci. & Technol., Hanoi, Vietnam
Abstract :
This paper proposes a multiple-input multiple-output (MIMO) transmission scheme for M-ary modulations, called Spatially Modulated Orthogonal Space-Time Block Coding (SM-OSTBC), based on the concept of Spatial Constellation (SC) codewords introduced by Le at el. . In the proposed scheme, transmit codeword matrices are generated by multiplying SC matrices with codewords constructed from Orthogonal Space-time Block Codes (O-STBC). The maximum spectral efficiency of the proposed scheme is equal to (n_T-2+ log_2 M) bpcu, where n_T is the number of transmit antennas and M is the modulation order. The SC matrices provide a means of carrying information bits together with the O-STBC codewords and allow the SM-OSTBC scheme to achieve second-order transmit diversity by satisfying the non-vanishing determinant property. A systematic method to design the SC codewords for an even number of transmit antennas greater than 3 is presented. A single-stream maximum-likelihood (ML) decoder, which requires a low computational complexity thanks to the structure of the SM-OSTBC codewords and to the orthogonality of the O-STBCs, and a sphere decoder with further reduced signal processing complexity are developed. The bit error rate (BER) performance of the proposed scheme is studied by using both theoretical union bound analysis and computer simulations. Finally, simulation results are presented in order to compare BER performance, energy efficiency and decoding complexity of the proposed scheme with those of several existing MIMO transmission schemes.
Keywords :
MIMO communication; OFDM modulation; computational complexity; determinants; diversity reception; error statistics; maximum likelihood decoding; space division multiplexing; space-time block codes; spectral analysis; transmitting antennas; BER performance; M-ary modulation; MIMO transmission scheme; MIMO transmission schemes; ML decoder; SM-OSTBC codeword scheme; bit error rate; computational complexity; decoding complexity; energy efficiency; maximum likelihood decoder; modulation order; multiple input multiple output; nonvanishing determinants; spatial constellation; spatially modulated orthogonal space-time block codes; spectral efficiency; transmit codeword matrices; transmit diversity; transmitting antenna; union bound analysis; Block codes; Complexity theory; Decoding; Dispersion; MIMO; Modulation; Transmitting antennas; MIMO systems; space-time block coded spatial modulation; space-time block coding; spatial constellation matrices; spatial modulation;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2013.112913.130219