Title :
Pareto Region Characterization for Rate Control in MIMO Interference Systems and Nash Bargaining
Author :
Chen, Zengmao ; Vorobyov, Sergiy A. ; Wang, Cheng-Xiang ; Thompson, John
Author_Institution :
EECE, Joint Res. Inst. for Signal & Image Process., Heriot-Watt Univ., Edinburgh, UK
Abstract :
In this note, the problem of rate control in multiuser multiple-input multiple-output (MIMO) interference systems is formulated as a multicriteria optimization (MCO) problem. The Pareto rate region of the MCO problem is first characterized by giving a sufficient condition for the convexity of the Pareto rate region. Second, various rate region convexification approaches including a multistage interference cancellation and a full projection (FP)-based interference avoidance scheme are analyzed. An achievable rate region based on FP is also given for MIMO interference systems. Third, Nash bargaining (NB) is applied to transform the MCO problem into a single-objective problem. The characteristics of the NB over MIMO interference systems such as the uniqueness and optimality of different type NB solutions are investigated. A method to determine the optimality of FP- and time-division multiplexing-based NB solutions is presented as well. Finally, the convexity of the rate region and the existence of the FP-based NB solution for MIMO interference systems are examined numerically.
Keywords :
MIMO communication; Pareto optimisation; game theory; interference; time division multiplexing; FP-based NB solutions; FP-based interference avoidance scheme; MCO problem; MIMO interference systems; Nash bargaining; Pareto region characterization; full projection-based interference avoidance scheme; multicriteria optimization problem; multistage interference cancellation; multiuser multiple-input multiple-output interference systems; rate control problem; rate region convexification approach; single-objective problem; time-division multiplexing-based NB solutions; Covariance matrix; Interference cancellation; MIMO; Receivers; Time division multiplexing; MIMO interference channel; Nash bargaining; Pareto region; multicriteria optimization (MCO);
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2012.2197075