Title :
Delay-Optimal User Scheduling and Inter-Cell Interference Management in Cellular Network via Distributive Stochastic Learning
Author :
Huang, Huang ; Lau, Vincent K N
Author_Institution :
Dept. of Electron. & Comput. Eng. (ECE), Hong Kong Univ. of Sci. & Technol. (HKUST), Hong Kong, China
fDate :
12/1/2010 12:00:00 AM
Abstract :
In this paper, we propose a distributive queue-aware intra-cell user scheduling and inter-cell interference (ICI) management control design for a delay-optimal celluar downlink system with M base stations (BSs), and K users in each cell. Each BS has K downlink queues for K users respectively with heterogeneous arrivals and delay requirements. The ICI management control is adaptive to joint queue state information (QSI) over a slow time scale, while the user scheduling control is adaptive to both the joint QSI and the joint channel state information (CSI) over a faster time scale. We show that the problem can be modeled as an infinite horizon average cost Partially Observed Markov Decision Problem (POMDP), which is NP-hard in general. By exploiting the special structure of the problem, we shall derive an equivalent Bellman equation to solve the POMDP problem. To address the distributive requirement and the issue of dimensionality and computation complexity, we derive a distributive online stochastic learning algorithm, which only requires local QSI and local CSI at each of the M BSs. We show that the proposed learning algorithm converges almost-surely (with probability 1) and has significant gain compared with various baselines. The proposed solution only has linear complexity order O(MK).
Keywords :
Markov processes; cellular radio; computational complexity; distributed algorithms; interference; optimisation; queueing theory; stochastic processes; telecommunication control; Bellman equation; CSI; ICI management control design; NP-hard problem; POMDP; QSI; cellular network; channel state information; computation complexity; delay-optimal celluar downlink system; delay-optimal user scheduling; distributive online stochastic learning algorithm; distributive queue-aware intra-cell user scheduling; downlink queue; inter-cell interference management; partially observed Markov decision problem; queue state information; Complexity theory; Delay; Equations; Interference; Markov processes; Mathematical model; Optimal control; Multi-cell systems; delay optimal control; interference management; partially observed Markov decision problem (POMDP); stochastic learning;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2010.092810.100143