Title :
Integer-Forcing MIMO Linear Receivers Based on Lattice Reduction
Author :
Sakzad, Amin ; Harshan, J. ; Viterbo, Emanuele
Author_Institution :
Dept. of Electr. & Comput. Syst. Eng., Monash Univ., Melbourne, VIC, Australia
Abstract :
A new architecture called integer-forcing (IF) linear receiver has been recently proposed for multiple-input multiple-output (MIMO) fading channels, wherein an appropriate integer linear combination of the received symbols has to be computed as a part of the decoding process. In this paper, we propose a method based on Hermite-Korkine-Zolotareff (HKZ) and Minkowski lattice basis reduction algorithms to obtain the integer coefficients for the IF receiver. We show that the proposed method provides a lower bound on the ergodic rate, and achieves the full receive diversity. Suitability of complex Lenstra-Lenstra-Lovasz (LLL) lattice reduction algorithm (CLLL) to solve the problem is also investigated. Furthermore, we establish the connection between the proposed IF linear receivers and lattice reduction-aided MIMO detectors (with equivalent complexity), and point out the advantages of the former class of receivers over the latter. For the 2 × 2 and 4× 4 MIMO channels, we compare the coded-block error rate and bit error rate of the proposed approach with that of other linear receivers. Simulation results show that the proposed approach outperforms the zero-forcing (ZF) receiver, minimum mean square error (MMSE) receiver, and the lattice reduction-aided MIMO detectors.
Keywords :
MIMO communication; decoding; diversity reception; error statistics; fading channels; radio receivers; BER; CLLL; HKZ algorithms; Hermite-Korkine-Zolotareff algorithms; IF receiver; MIMO detectors; MMSE receiver; Minkowski lattice basis reduction algorithms; ZF receiver; bit error rate; coded-block error rate; complex Lenstra-Lenstra-Lovasz lattice reduction algorithm; decoding process; ergodic rate; full receive diversity; integer-forcing MIMO linear receivers; minimum mean square error receiver; multiple-input multiple-output fading channels; zero-forcing receiver; Complexity theory; Decoding; Detectors; Lattices; MIMO; Receivers; Vectors; Hermite-Korkine-Zolotareff reduction; MIMO; Minkowski reduction; complex Lenstra-Lenstra-Lovasz lattice reduction; integer-forcing; lattice reduction; linear receivers;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2013.090513.121465