DocumentCode
3578560
Title
Wind farm layout optimization by using Definite Point selection and genetic algorithm
Author
Shakoor, Rabia ; Hassan, Mohammad Yusri ; Raheem, Abdur ; Rasheed, Nadia ; Mohd Nasir, Mohamad Na´im
Author_Institution
Centre of Electr. Energy Syst. (CEES), Univ. Teknol. Malaysia (UTM), Johor Bahru, Malaysia
fYear
2014
Firstpage
191
Lastpage
195
Abstract
At present, wind energy industry is facing major design constraints in boosting the power output. These can be overcome by setting up the right turbine at the right place. This paper proposes an optimized layout design of a wind farm by using Definite Point selection(DPS) and genetic algorithm, which can minimize the cost per unit power and minimum wake effects, while sustaining the obligatory space between adjacent turbines for operation safety. The existing cost per unit power can be reduced by changing the dimensions of wind farm with constant area. In this study, the velocity deficits caused by the wakes of each turbine were calculated by using Jensens wake model. The total area of wind farm 2 Km × 2 Km was divided into 10×10 cells with each cell having dimensions 200 m × 200 m. The results showed that power output of the wind farm by using the same area in different dimension was increased even when the total numbers of wind turbines were the same. It was observed that 32 wind turbines in 2 Km × 2 Km area could produce a total power of 16,251.56 kW with fitness value of 0.001537. The present research results had been validated using the results from previous studies.
Keywords
genetic algorithms; power system planning; wakes; wind power plants; Jensens wake model; definite point selection; genetic algorithm; operation safety; power 16251.56 kW; wake effects; wind energy industry; wind farm layout optimization; Genetic algorithms; Layout; Linear programming; Optimization; Wind farms; Wind speed; Wind turbines; Genetic algorithm; Jensen 0s wake mode; Optimization; Wake effect; Wind farm;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy (PECon), 2014 IEEE International Conference on
Print_ISBN
978-1-4799-7296-8
Type
conf
DOI
10.1109/PECON.2014.7062439
Filename
7062439
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