DocumentCode :
3606558
Title :
Leakage-Aware Dynamic Resource Allocation in Hybrid Energy Powered Cellular Networks
Author :
Daosen Zhai ; Min Sheng ; Xijun Wang ; Yuzhou Li
Author_Institution :
State Key Lab. of Integrated Service Networks, Xidian Univ., Xi´an, China
Volume :
63
Issue :
11
fYear :
2015
Firstpage :
4591
Lastpage :
4603
Abstract :
Energy harvesting is a promising technique to reduce conventional grid energy consumption, which caters for 5G visions on the green evolution of current cellular networks. To fully exploit the harvested energy, an inefficient factor caused by the battery leakage must be taken into account to tackle the energy dissipation problem, which triggers a new dimensional optimization related to the transmission time. However, most approaches are studied for perfect battery models and neglect the optimization for the transmission time. In this paper, we formulate the battery leakage process into our model to explore the grid energy conservation problem by jointly considering admission control, power allocation, subcarrier assignment, and transmission time determination in cellular networks powered by grid and renewable energy. To tackle this problem, we exploit the Lyapunov optimization technique to develop an online algorithm, referred to as leakage-aware dynamic resource allocation policy (LADRA). Specifically, the LADRA only needs to track the current system states (e.g., channel and energy conditions) but without requiring their prior-knowledge. Furthermore, we prove that the minimum grid energy consumption value can be achieved by our proposed algorithm asymptotically. Simulation results verify the correctness of the theoretical analysis, as well as exhibit the performance improvement against other algorithms in terms of grid energy consumption and queue backlog.
Keywords :
cellular radio; energy harvesting; optimisation; resource allocation; telecommunication power management; 5G visions; LADRA; Lyapunov optimization technique; admission control; battery leakage process; dimensional optimization; energy dissipation problem; energy harvesting; green evolution; grid energy conservation problem; grid energy consumption; hybrid energy powered cellular networks; leakage-aware dynamic resource allocation policy; power allocation; queue backlog; subcarrier assignment; transmission time determination; Algorithm design and analysis; Batteries; Energy consumption; Heuristic algorithms; Queueing analysis; Renewable energy sources; Resource management; Energy harvesting; battery leakage; network stability; stochastic optimization;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2015.2480762
Filename :
7273848
Link To Document :
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