Title :
Linear Precoding for MIMO Multiple Access Channels with Discrete-Constellation Inputs
Author :
Wang, Mingxi ; Zeng, Weiliang ; Xiao, Chengshan
Author_Institution :
Dept. of Electr. & Comput. Eng., Missouri Univ. of Sci. & Technol., Rolla, MO, USA
Abstract :
In this paper, we study linear precoding for multiple-input multiple-output (MIMO) multiple access channels (MAC) with discrete-constellation inputs. We derive the constellation-constrained capacity region for the MIMO MAC with an arbitrary number of users. Due to the non-concavity of the objective function, we obtain the necessary conditions for the weighted sum rate (WSR) maximization problem through Karush-Kuhn-Tucker (KKT) analysis. To find the optimal precoding matrices, we propose an iterative algorithm utilizing alternating optimization strategy and gradient descent update. Numerical results show that when inputs are digital modulated signals and the signal-to-noise ratio (SNR) is in the medium range, our proposed algorithm offers significantly higher sum rate than non-precoding and the traditional method which maximizes Gaussian-input sum capacity. Furthermore, the bit error rate (BER) results of a low-density parity-check (LDPC) coded system also indicate that the system with the proposed linear precoder achieves significant gains over other methods.
Keywords :
MIMO communication; channel coding; error statistics; gradient methods; iterative methods; linear codes; optimisation; parity check codes; wireless channels; BER; Gaussian-input sum capacity; KKT analysis; Karush-Kuhn-Tucker analysis; LDPC coded system; MIMO MAC; SNR; WSR maximization problem; bit error rate; constellation-constrained capacity region; digital modulated signals; discrete-constellation inputs; gradient descent update; iterative algorithm; linear precoding; low-density parity-check coded system; multiple-input multiple-output multiple access channels; optimal precoding matrices; signal-to-noise ratio; weighted sum rate maximization problem; Bit error rate; Covariance matrix; MIMO; Parity check codes; Phase shift keying; Signal to noise ratio; Vectors;
Conference_Titel :
Global Telecommunications Conference (GLOBECOM 2011), 2011 IEEE
Conference_Location :
Houston, TX, USA
Print_ISBN :
978-1-4244-9266-4
Electronic_ISBN :
1930-529X
DOI :
10.1109/GLOCOM.2011.6133857