DocumentCode
509841
Title
Optimal operation of photovoltaic/utility grid interconnected electrical power system using neural network
Author
El-Tamaly, H.H. ; Mohammed, Adel A Elbaset
Author_Institution
Fac. of Eng., Univ. Elminia, Elminia, Egypt
Volume
1
fYear
2006
fDate
19-21 Dec. 2006
Firstpage
317
Lastpage
322
Abstract
The performance of photovoltaic power system interconnected with utility grid can be improved through an application of advanced control method. This paper introduces an application of an artificial neural network on the operation control of the photovoltaic/utility grid to improve system efficiency and reliability. The generated power from photovoltaic solar cells array has been calculated by a computer program under known insolation and temperature. The computer program which proposed here and applied to carry out these calculations is based on the minimization of the power purchase from grid. This paper focus on a hybrid system consists of photovoltaic system accompanied with battery storage interconnected with utility grid taking into account the variation of solar radiation and load demand during the day. Different feed forward neural network architectures are trained and tested with data containing a variety of operation patterns. A simulation is carried out over one year using the hourly data of the load demand, insolation and temperature at El´Zafranna site, Egypt as a case study. The results show that the selected neural network architecture (5+9+4) gives reasonably accurate operation of photovoltaic/utility grid accompanied with battery storage.
Keywords
battery storage plants; feedforward neural nets; hybrid power systems; load regulation; photovoltaic power systems; power grids; power system analysis computing; power system interconnection; artificial neural network; battery storage; computer program; feed forward neural network architectures; hybrid system; interconnected electrical power system; load demand; optimal operation; photovoltaic power system; photovoltaic solar cells array; utility grid; Application software; Artificial neural networks; Batteries; Control systems; Neural networks; Photovoltaic systems; Power system interconnection; Power system reliability; Solar power generation; Temperature; Neural network; Photovoltaic system; Utility grid Operation strategy;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Systems Conference, 2006. MEPCON 2006. Eleventh International Middle East
Conference_Location
El-Minia
Print_ISBN
978-1-4244-5111-1
Type
conf
Filename
5372333
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