DocumentCode
20380
Title
Energy Cooperation in Cellular Networks with Renewable Powered Base Stations
Author
Yeow-Khiang Chia ; Sumei Sun ; Rui Zhang
Author_Institution
Inst. for Infocomm Res., Singapore, Singapore
Volume
13
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
6996
Lastpage
7010
Abstract
In this paper, we propose a model for energy cooperation between cellular base stations (BSs) with individual hybrid power supplies (including both the conventional grid and renewable energy sources), limited energy storages, and connected by resistive power lines for energy sharing. When the renewable energy profile and energy demand profile at all BSs are deterministic or known ahead of time, we show that the optimal energy cooperation policy for the BSs can be found by solving a linear program. We show the benefits of energy cooperation in this regime. When the renewable energy and demand profiles are stochastic and only causally known at the BSs, we propose an online energy cooperation algorithm and show the optimality properties of this algorithm under certain conditions. Furthermore, the energy-saving performances of the developed offline and online algorithms are compared by simulations, and the effect of the availability of energy state information (ESI) on the performance gains of the BSs´ energy cooperation is investigated. Finally, we propose a hybrid algorithm that can incorporate offline information about the energy profiles, but operates in an online manner.
Keywords
cellular radio; energy storage; linear programming; renewable energy sources; stochastic programming; telecommunication cables; telecommunication power management; telecommunication power supplies; BS; ESI; cellular base station; cellular network; energy cooperation; energy demand profile; energy saving performance; energy sharing; energy state information; energy storage; linear program; online energy cooperation algorithm; power supply; renewable energy profile; renewable powered base station; resistive power line; stochastic optimization; Base stations; Cellular networks; Energy consumption; Energy storage; Greedy algorithms; Renewable energy sources; Stochastic processes; Wireless communication; Energy cooperation; cellular networks; energy harvesting; hybrid power supply; stochastic optimization;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2014.2339845
Filename
6874568
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