Title :
MIMO B-MAC Interference Network Optimization Under Rate Constraints by Polite Water-Filling and Duality
Author :
Liu, An ; Liu, Youjian ; Xiang, Haige ; Luo, Wu
Author_Institution :
State Key Lab. of Adv. Opt. Commun. Syst. & Networks, Peking Univ., Beijing, China
Abstract :
We take two new approaches to design efficient algorithms for transmitter optimization under rate constraints in order to guarantee the Quality of Service for MIMO B-MAC interference networks. A B-MAC network is a generalized interference network that is a combination of multiple interfering broadcast channels (BC) and multiaccess channels (MAC). Two related optimization problems, maximizing the minimum of weighted rates under a sum-power constraint and minimizing the sum-power under rate constraints, are considered. The first approach takes advantage of existing algorithms for SINR problems by building a bridge between rate and SINR through the design of optimal mappings between them. The second approach exploits the polite water-filling structure, which is the network version of water-filling satisfied by all the Pareto optimal input of a large class of achievable regions of B-MAC networks. It replaces most generic optimization algorithms currently used for such networks and reduces the complexity while demonstrating superior performance even in non-convex cases. Both centralized and distributed algorithms are designed and the performance is analyzed in addition to numeric examples.
Keywords :
MIMO communication; Pareto optimisation; broadcast channels; distributed algorithms; duality (mathematics); interference suppression; multicast communication; quality of service; radio transmitters; B-MAC; MIMO; Pareto optimal; SINR; broadcast channels; centralized algorithms; distributed algorithms; duality; interference network; multiaccess channels; optimization; polite water-filling; quality of service; rate constraints; transmitter; Algorithm design and analysis; Encoding; Interference cancellation; MIMO; Optimization; Signal to noise ratio; Duality; MIMO; interference network; polite water-filling; quality of service;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2010.2088394