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Optimization of scheduling for home appliances in conjunction with renewable and energy storage resources

Authors
Yu, TaeyoonKim, Dong SikSon, Sung-Yong
Issue Date
Jul-2013
Publisher
Science and Engineering Research Support Society
Keywords
Home appliance; Mixed binary linear program; Schedule plan; Smart grid; Time-varying electricity price
Citation
International Journal of Smart Home, v.7, no.4, pp.261 - 272
Journal Title
International Journal of Smart Home
Volume
7
Number
4
Start Page
261
End Page
272
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/14940
DOI
10.14257/ijsh.2013.7.4.27
ISSN
1975-4094
Abstract
In this paper, for efficient energy consumption through the residential demand response in the smart grid, an optimization algorithm, which can provide a schedule plan for the home appliance usages, is proposed. In order to minimize the average electricity price based on the time-varying electricity price in conjunction with the peak hourly load, which decides the capacity of the electric supply facilities, we establish a mixed integer linear programming problem considering various energy consumption patterns of home appliances. In addition, a photovoltaic system and an energy storage are added to the residential side to achieve further efficient schedule plans. By measuring the power consumptions of the home appliances with respect to the time, we constructed the power consumption patterns of each appliance and numerically analyzed the performance of our algorithm by using a real time-varying electricity price and the solar cell power profile obtained through a mathematical model.
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Graduate School (Dept. of Next Generation Smart Energy System Convergence)
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