Title :
Resource Allocation Optimization for Users with Different Levels of Service in Multicarrier Systems
Author :
Kibria, Mirza Golam ; Lin Shan
Author_Institution :
Wireless Network Res. Inst., Nat. Inst. of Inf. & Commun. Technol., Yokosuka, Japan
Abstract :
We optimize the throughput of a single cell multiuser orthogonal frequency division multiplexing system with proportional data rate fairness among the users. The concept is to support mobile users with different levels of service. The optimization problem is a mixed integer nonlinear programming problem, which is computationally very expensive. We propose a novel and efficient near-optimal solution adopting a two-phase optimization approach that separates the subcarrier and power allocation. In the first phase, we relax the strict proportional data rate requirements and employ an iterative subcarrier allocation approach that coarsely satisfies desired data rate proportionality constraints. In the second phase, we reallocate the power among the users in an iterative way to further enhance the adherence to the desired proportions by exploiting the normalized proportionality deviation measure. The simulation results show that the proposed solution exhibits very strong adherence to the desired proportional data rate fairness while achieving higher system throughput compared to the other existing solutions.
Keywords :
OFDM modulation; cellular radio; integer programming; iterative methods; nonlinear programming; resource allocation; OFDM; data rate proportionality constraints; iterative subcarrier allocation approach; mixed integer nonlinear programming problem; mobile users; multicarrier systems; near-optimal solution; normalized proportionality deviation measure; power allocation; proportional data rate fairness; resource allocation optimization; single cell multiuser orthogonal frequency division multiplexing system; two-phase optimization approach; OFDM; Optimization; Resource management; Signal processing algorithms; Signal to noise ratio; Throughput; Time division multiple access; Fairness; multicarrier; resource allocation;
Journal_Title :
Signal Processing Letters, IEEE
DOI :
10.1109/LSP.2015.2440440