Title :
Single-symbol decodable space-time block code for multi-input-multi-output systems with four transmit antennas
Author :
Gye-Tae Gil ; Dong-Hoi Kim
Author_Institution :
Central R&D Lab., Korea Telecom (KT), South Korea
Abstract :
This study presents an orthogonal design of space-time block code (STBC) that is single symbol decodable and enables full diversity and full rate transmission in a quasi-static channel environment. In the proposed scheme, full diversity is achieved by use of constellation rotation and co-ordination interpolation as is the case for the co-ordinate interleaved orthogonal design, whereas the transmission matrix of the proposed code consists of orthogonal columns with all non-zero elements, alleviating the concern about high peak-to-average power ratio. In particular, the proposed code offers lower complexity of channel estimation, and exhibits lower symbol error rate than the conventional quasi-orthogonal STBC when an maximum-likelihood decision-directed channel estimator is assumed. The advantages of the proposed code over the conventional codes are demonstrated through computer simulations. In addition, the selection of the angle of rotation for the proposed design is also presented, regarding the impact of channel estimation error.
Keywords :
MIMO communication; channel estimation; communication complexity; diversity reception; error statistics; interleaved codes; interpolation; maximum likelihood decoding; orthogonal codes; space-time block codes; transmitting antennas; channel estimation error; complexity; computer simulation; constellation rotation; coordinate interleaved orthogonal design; coordination interpolation; full diversity; full rate transmission; high peak-to-average power ratio; maximum-likelihood decision-directed channel estimator; multiinput-multioutput system; nonzero element; orthogonal column; quasiorthogonal STBC; quasistatic channel environment; rotation angle selection; single-symbol decodable space-time block code; symbol error rate; transmission matrix; transmit antenna;
Journal_Title :
Communications, IET
DOI :
10.1049/iet-com.2011.0948