DocumentCode :
1486889
Title :
Robust Lattice Alignment for K -User MIMO Interference Channels With Imperfect Channel Knowledge
Author :
Huang, Huang ; Lau, Vincent K N ; Du, Yinggang ; Liu, Sheng
Author_Institution :
Electr. & Comput. Eng. Dept., Hong Kong Univ. of Sci. & Technol., Hong Kong, China
Volume :
59
Issue :
7
fYear :
2011
fDate :
7/1/2011 12:00:00 AM
Firstpage :
3315
Lastpage :
3325
Abstract :
In this paper, we consider a robust lattice alignment design for K-user quasi-static multiple-input multiple-output (MIMO) interference channels with imperfect channel knowledge. With random Gaussian inputs, the conventional interference alignment (IA) method has the feasibility problem when the channel is quasi-static. On the other hand, structured lattices can create structured interference as opposed to the random interference caused by random Gaussian symbols. The structured interference space can be exploited to transmit the desired signals over the gaps. However, the existing alignment methods on the lattice codes for quasi-static channels either require infinite signal-to-noise ratio (SNR) or symmetric interference channel coefficients. Furthermore, perfect channel state information (CSI) is required for these alignment methods, which is difficult to achieve in practice. In this paper, we propose a robust lattice alignment method for quasi-static MIMO interference channels with imperfect CSI at all SNR regimes, and a two-stage decoding algorithm to decode the desired signal from the structured interference space. We derive the achievable data rate based on the proposed robust lattice alignment method, where the design of the precoders, decorrelators, scaling coefficients and interference quantization coefficients is jointly formulated as a mixed integer and continuous optimization problem. The effect of imperfect CSI is also accommodated in the optimization formulation, and hence the derived solution is robust to imperfect CSI. We also design a low complex iterative optimization algorithm for our robust lattice alignment method by using the existing iterative IA algorithm that was designed for the conventional IA method. Numerical results verify the advantages of the proposed robust lattice alignment method compared with the time-division multiple-access (TDMA), two-stage maximum-likelihood (ML) decoding, generalized Han-Kobayashi (HK), distributive IA- - and conventional IA methods in the literature.
Keywords :
MIMO communication; interference (signal); time division multiple access; Han Kobayashi; MIMO interference channels; alignment methods; channel state information; imperfect channel knowledge; quasistatic channels; random Gaussian inputs; robust lattice alignment; structured interference; time division multiple access; two stage maximum likelihood decoding; Decoding; Interference channels; Lattices; MIMO; Optimization; Quantization; Imperfect CSI; MIMO; interference alignment; interference channel; lattice codes;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2011.2135855
Filename :
5741756
Link To Document :
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