Title :
Distributed Linear Precoder Optimization and Base Station Selection for an Uplink Heterogeneous Network
Author :
Mingyi Hong ; Zhi-Quan Luo
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Minnesota, Minneapolis, MN, USA
Abstract :
In a heterogeneous wireless cellular network, each user may be covered by multiple access points such as macro/pico/relay/femto base stations (BS). An effective approach to maximize the sum utility (e.g., system throughput) in such a network is to jointly optimize users´ linear procoders as well as their BS associations. In this paper, we first show that this joint optimization problem is NP-hard and thus is difficult to solve to global optimality. To find a locally optimal solution, we formulate the problem as a noncooperative game in which the users and the BSs both act as players. We introduce a set of new utility functions for the players and show that every Nash equilibrium (NE) of the resulting game is a stationary solution of the original sum utility maximization problem. Moreover, we develop a best-response type algorithm that allows the players to distributedly reach a NE of the game. Simulation results show that the proposed distributed algorithm can effectively relieve local BS congestion and simultaneously achieve high throughput and load balancing in a heterogeneous network.
Keywords :
cellular radio; game theory; linear codes; optimisation; precoding; radio links; telecommunication congestion control; BS congestion; NE; NP-hard problem; Nash equilibrium; base station selection; distributed linear precoder optimization; heterogeneous wireless cellular network; joint optimization problem; load balancing; multiple access point; noncooperative game; sum utility maximization problem; uplink heterogeneous network; Covariance matrix; Games; Interference; Joints; MIMO; Optimization; Vectors; Base station selection; Nash equilibrium; heterogeneous networks; noncooperative gams; precoder optimization;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2013.2252169