DocumentCode
31944
Title
Energy Management and Cross Layer Optimization for Wireless Sensor Network Powered by Heterogeneous Energy Sources
Author
Weiqiang Xu ; Yushu Zhang ; Qingjiang Shi ; Xiaodong Wang
Author_Institution
Sch. of Inf. Sci. & Technol., Zhejiang Sci-Tech Univ., Hangzhou, China
Volume
14
Issue
5
fYear
2015
fDate
May-15
Firstpage
2814
Lastpage
2826
Abstract
Recently, utilizing renewable energy for wireless system has attracted extensive attention. However, due to the instable energy supply and the limited battery capacity, renewable energy cannot guarantee to provide the perpetual operation for wireless sensor networks (WSN). The coexistence of renewable energy and electricity grid is expected as a promising energy supply manner to remain function of WSN for a potentially infinite lifetime. In this paper, we propose a new system model suitable for WSN, taking into account multiple energy consumptions due to sensing, transmission and reception, heterogeneous energy supplies from renewable energy, electricity grid and mixed energy, and multi-dimension stochastic natures due to energy harvesting profile, electricity price and channel condition. A discrete-time stochastic cross-layer optimization problem is formulated to achieve the optimal trade-off between the time-average rate utility and electricity cost subject to the data and energy queuing stability constraints. The Lyapunov drift-plus-penalty with perturbation technique and block coordinate descent method is applied to obtain a fully distributed and low-complexity cross-layer algorithm only requiring knowledge of the instantaneous system state. The explicit trade-off between the optimization objective and queue backlog is theoretically proven. Finally, through extensive simulations, the theoretic claims are verified, and the impacts of a variety of system parameters on overall objective, rate utility and electricity cost are investigated.
Keywords
optimisation; perturbation techniques; renewable energy sources; wireless sensor networks; Lyapunov drift-plus-penalty; WSN; block coordinate descent method; cross layer optimization; discrete-time stochastic cross-layer optimization problem; electricity price; energy harvesting profile; energy management; heterogeneous energy sources; perturbation technique; renewable energy; wireless sensor network; Batteries; Electricity; Energy consumption; Optimization; Power grids; Radio frequency; Wireless sensor networks; Lyapunov optimization; Wireless sensor networks; block coordinate descent; cross-layer optimization; crosslayer optimization; drift-plus-penalty; electricity grid; energy harvesting; energy management; heterogeneous energy;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2015.2394799
Filename
7017589
Link To Document