Title :
Energy Consumption Analysis of Energy Harvesting Systems with Power Grid
Author :
Yuyi Mao ; Guanding Yu ; Caijun Zhong
Author_Institution :
Dept. of Inf. Sci. & Electron. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
Energy Harvesting (EH) is an indispensable technology for future wireless communication systems due to its potential in saving nonrenewable energy and making the communication environmentally friendly. However, due to the unpredictable and intermittent nature of the external energy arrivals, communication systems solely powered by harvested energy can not guarantee the delivery of reliable and uninterrupted services. Consequently, having stable power supply from power grid is still of great importance in EH communication systems. In this letter, we consider a wireless communication system powered by both power grid energy and harvested energy. Specifically, we propose two strategies depending on how the harvested energy is used, and investigate the average energy consumed from the power grid in each case. The major contribution of this letter is the derivation of recursive expressions for the grid energy consumption in hybrid-energy supply communication systems, which may provide an useful tool for transmission scheme designs.
Keywords :
energy consumption; energy harvesting; power grids; radiocommunication; recursive estimation; telecommunication power management; telecommunication power supplies; EH communication systems; energy consumption analysis; energy harvesting systems; grid energy consumption; hybrid-energy supply communication systems; nonrenewable energy; power grid energy; power supply stability; recursive expression derivation; service delivery reliability; transmission scheme designs; uninterrupted service delivery; wireless communication systems; Batteries; Energy consumption; Energy harvesting; Energy states; Power grids; Wireless communication; Energy harvesting; hybrid-energy supply system; power grid energy consumption;
Journal_Title :
Wireless Communications Letters, IEEE
DOI :
10.1109/WCL.2013.081913.130391