DocumentCode :
253795
Title :
Optimization of an air conditioning unit according to renewable energy availability and user´s comfort
Author :
Cabrera, Ana K. ; Ul Banna, Hasan ; Koch-Ciobotarus, Cosmin ; Ghosh, Sudip
Author_Institution :
Electr. Eng. Dept., Tech. Univ. of Catalunya, Barcelona, Spain
fYear :
2014
fDate :
12-15 Oct. 2014
Firstpage :
1
Lastpage :
7
Abstract :
The integration of renewable energy sources (RES) in the electrical system can be achieved on all voltage levels using both large power plants and individual/local small distributed renewable generation units. The present paper focuses on a low voltage consumer: a house with a dedicated photovoltaic system which supplies energy to an air conditioning unit. However the problem is the variability of this energy during the day. The solution proposed, in this paper, is the development of a home energy management system (HEMS), in which the air conditioning unit is controlled according to the solar irradiation during the day and the desirable inside temperature of the house between the hours of 9:00 to 18:00. The algorithm considers the thermodynamic model of the house and the photovoltaic panels´ model to maximize the use of solar energy during the day. This optimization is implemented in CPLEX and the complete algorithm and a graphical user´s interface (GUI) is developed in JAVA. At the end, the test simulations shows that the inside temperature during the day is closed to the desirable temperature in which the air conditioning unit is on according the algorithm developed especially on those moments with high irradiation. In the study, a comparison between the normal control of an air conditioning unit and the HEMS is developed.
Keywords :
Java; air conditioning; building management systems; distributed power generation; energy management systems; graphical user interfaces; optimisation; power engineering computing; solar cells; solar power; solar radiation; CPLEX; GUI; HEMS; Java; RES integration; air conditioning unit optimization; distributed renewable generation unit; electrical system; energy supply; graphical user interface; home energy management system; large power plant; photovoltaic panel; photovoltaic system; renewable energy source integration; solar energy; solar irradiation; thermodynamic model; user comfort; Air conditioning; Atmospheric modeling; Microgrids; Optimization; Photovoltaic systems; Radiation effects; Temperature distribution; Air conditioning unit; home energy management; microgrids; optimization; renewable energy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), 2014 IEEE PES
Conference_Location :
Istanbul
Type :
conf
DOI :
10.1109/ISGTEurope.2014.7028866
Filename :
7028866
Link To Document :
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