Title :
Unitary precoding for integer-forcing MIMO linear receivers
Author :
Sakzad, Amin ; Viterbo, Emanuele
Author_Institution :
Dept. of Electr. & Comput. Syst., Monash Univ., Clayton, VIC, Australia
Abstract :
A flat fading point-to-point multiple-antenna channel is considered where the channel state information is known at both transmitter and receiver. At the transmitter side, we use a lattice encoder to map information symbols to lattice codewords. The lattice coded layers are then precoded using unitary matrices satisfying non-vanishing minimum product distance. At the receiver side, an integer-forcing linear receiver is employed. This scheme is called `unitary precoded integer-forcing´. We show that by applying the proposed precoding technique full-diversity can be achieved. We then verify this result by conducting computer simulations in a 2 × 2 and 4 × 4 multiple-input multiple-output (MIMO) channel using full-diversity algebraic rotation precoder matrices.
Keywords :
MIMO communication; algebraic codes; antenna arrays; fading channels; precoding; channel state information; flat fading point-to-point multiple-antenna channel; full-diversity algebraic rotation precoder matrices; information symbols; integer-forcing MIMO linear receivers; lattice coded layers; lattice codewords; multiple-input multiple-output channel; unitary matrices; unitary precoding; Decoding; Lattices; MIMO; Matrix decomposition; Noise; Receivers; Transmitters; Integer-Forcing; full-diversity; lattice codes; unitary precoding;
Conference_Titel :
Information Theory Workshop (ITW), 2014 IEEE
Conference_Location :
Hobart, TAS
DOI :
10.1109/ITW.2014.6970836