Title :
A Low ML-Decoding Complexity, Full-Diversity, Full-Rate MIMO Precoder
Author :
Srinath, K. Pavan ; Rajan, B. Sundar
Author_Institution :
Dept. of Electr. Commun. Eng., Indian Inst. of Sci., Bangalore, India
Abstract :
Preceding for multiple-input multiple-output (MIMO) antenna systems is considered with perfect channel knowledge available at both the transmitter and the receiver. For two transmit antennas and QAM constellations, a real-valued precoder which is approximately optimal (with respect to the minimum Euclidean distance between points in the received signal space) among real-valued precoders based on the singular value decomposition (SVD) of the channel is proposed. The proposed precoder is obtainable easily for arbitrary QAM constellations, unlike the known complex-valued optimal precoder by Collin et at for two transmit antennas which is in existence for 4-QAM alone and is extremely hard to obtain for larger QAM constellations. The proposed precoding scheme is extended to higher number of transmit antennas on the lines of the E - dmin pre coder for 4-QAM by Vrigneau et at which is an extension of the complex-valued optimal precoder for 4-QAM. The proposed precoder´s ML-decoding complexity as a function of the constellation size M is only O(√M) while that of the E-dmin precoder is O(M√M)(M = 4). Compared to the recently proposed X- and Y-precoders, the error performance of the proposed precoder is significantly better while being only marginally worse than that of the E-dmin precoder for 4-QAM. It is argued that the proposed precoder provides full-diversity for QAM constellations and this is supported by simulation plots of the word error probability for 2 × 2, 4 × 4 and 8×8 systems.
Keywords :
MIMO communication; diversity reception; error statistics; maximum likelihood decoding; precoding; quadrature amplitude modulation; radio receivers; radio transmitters; transmitting antennas; 4-QAM; MIMO antenna systems; SVD; arbitrary QAM constellations; channel knowledge; complex-valued optimal precoder; constellation size; error performance; full-diversity MIMO precoder; full-rate MIMO precoder; low ML-decoding complexity; multiple-input multiple-output antenna systems; precoding scheme; real-valued precoders; receiver; singular value decomposition; transmit antennas; transmitter; word error probability; Complexity theory; Decoding; MIMO; Quadrature amplitude modulation; Receivers; Transmitting antennas; Diversity gain; low ML-decoding complexity; multiple-input multiple-output (MIMO) precoders; singular values; word error probability;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2011.2162957