Title :
Min-maxing interference alignment algorithm as a semidefinite programming problem
Author :
El-Absi, Mohammed ; El-Hadidy, Mohammed ; Kaiser, Thomas
Author_Institution :
Inst. of Digital Signal Process., Duisburg-Essen Univ., Duisburg, Germany
Abstract :
The main objective of this contribution is to develop a new interference alignment (IA) algorithm, which improves the sum-rate performance of multiuser MIMO communication systems. The recent iterative IA approaches cannot guarantee robust sum-rate performance in different K-user MIMO interference channels, especially at high SNR regime. In our proposed distributed optimization algorithm, each receiver maximizes the desired signal power while preserving the minimum interference leakage as a constraint. A convex relaxation has been applied to this optimization problem after reformulating it into semidefinite programming form. This algorithm provides orthogonal precoders and decoders, which is fairly simple in practical implementation. Simulation results of the proposed algorithm proffer significant sum-rate improvement in various interference channels compared to existing algorithms.
Keywords :
MIMO communication; convex programming; decoding; orthogonal codes; radiofrequency interference; wireless channels; K-user MIMO interference channel; SNR; convex relaxation; distributed optimization algorithm; interference leakage; min-maxing interference alignment algorithm; multiuser MIMO communication system; orthogonal decoder; orthogonal precoder; receiver; semidefinite programming problem; Decoding; Interference channels; MIMO; Optimization; Receivers; Signal processing algorithms; Convex Optimization; Interference Alignment; Multiple Input Multiple Output (MIMO); Semidefinite Programming; Sum-Rate;
Conference_Titel :
Signal Processing Advances in Wireless Communications (SPAWC), 2013 IEEE 14th Workshop on
Conference_Location :
Darmstadt
DOI :
10.1109/SPAWC.2013.6612058