Title :
Delay-optimal fair scheduling and resource allocation in multiuser wireless relay networks
Author :
Moghaddari, Mohammad ; Hossain, Ekram ; Le, Long Bao
Abstract :
We consider fair delay-optimal user selection and power allocation for a relay-based cooperative wireless network. Each user (mobile station) has an uplink queue with heterogeneous packet arrivals and delay requirements. Our system model consists of a base station, a relay station, and multiple users working in a time-division multiplexing (TDM) fashion, where per-user queuing is employed at the relay station to make the analysis of such system tractable. We model the problem as an infinite-horizon average reward Markov decision problem (MDP) where the control actions are functions of the instantaneous channel state information (CSI) as well as the queue state information (QSI) at the mobile and relay stations. To address the challenge of centralized control and huge complexity of MDP problems, we introduce a distributive and low-complexity solution. A linear structure is employed which approximates the value function of the associated Bellman equation by the sum of per-node value functions. Our online stochastic value iteration solution converges to the optimal solution almost surely (with probability 1) under some realistic conditions. Simulation results show that the proposed approach outperforms the conventional delay-aware user selection and power allocation schemes.
Keywords :
Markov processes; cooperative communication; infinite horizon; mobile radio; multi-access systems; probability; queueing theory; radio links; resource allocation; scheduling; time division multiplexing; wireless channels; Bellman equation; CSI; MDP; QSI; TDM; base station; channel state information; delay requirement; delay-aware user selection; delay-optimal fair scheduling; fair delay-optimal user selection; heterogeneous packet arrival; infinite-horizon average reward Markov decision problem; mobile station; multiuser wireless relay network; online stochastic value iteration solution; per-node value function; power allocation scheme; probability; queue state information; relay station; relay-based cooperative wireless network; resource allocation; system model; time-division multiplexing; uplink queue; Delay; Equations; Relays; Resource management; Signal to noise ratio; Stochastic processes; Vectors; Cooperative cellular networks; constrained Markov decision process (CMDP); delay-optimal scheduling; online stochastic learning algorithm; temporal fairness;
Conference_Titel :
Communications (ICC), 2012 IEEE International Conference on
Conference_Location :
Ottawa, ON
Print_ISBN :
978-1-4577-2052-9
Electronic_ISBN :
1550-3607
DOI :
10.1109/ICC.2012.6364766