Optimal selection of location, sizing and power factor for solar PV plants using differential evolution
Distributed power generation; Electric power factor; Electric power systems; Evolutionary algorithms; Fossil fuel power plants; Fossil fuels; Location; Optimization; Photovoltaic cells; Smart power grids; Solar energy; Solar power generation; Differential Evolution; Differential evolution method; En...
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2023
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my.uniten.dspace-228652023-05-29T14:12:51Z Optimal selection of location, sizing and power factor for solar PV plants using differential evolution Dang Huy P. Ramachandaramurthy V.K. Pesaran H.A.M. 57192416703 6602912020 57189061017 Distributed power generation; Electric power factor; Electric power systems; Evolutionary algorithms; Fossil fuel power plants; Fossil fuels; Location; Optimization; Photovoltaic cells; Smart power grids; Solar energy; Solar power generation; Differential Evolution; Differential evolution method; Environmental concerns; Optimal selection; Power distributions; Power system constraints; Renewable energies; Technical loss; Electric power transmission networks Environmental concern on fossil fuel power plants has been one of the drivers for the growth of renewable energy (RE) plants, particularly solar PV (SPV). Hence, it is imperative that the SPVs are connected to the power grid at suitable location to reduce technical losses and also provide peak load shaving. This would also require the determination of appropriate sizing and power factor of SPVs to ensure voltage limits are adhered to. In this paper, the integration of solar PV plants into the grid, either concurrently or sequentially, is optimized by utilizing Differential Evolution method. The optimal values for location, sizing and power factor of each of the plants are determined simultaneously, such that lowest network loss is achieved, without violating basic power system constraints. Variation of system loads and PV generation is considered, and the importance of optimizing power factor is also emphasized. � 2015 IEEE. Final 2023-05-29T06:12:51Z 2023-05-29T06:12:51Z 2016 Conference Paper 10.1109/ISGT-Asia.2015.7387122 2-s2.0-84964933141 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84964933141&doi=10.1109%2fISGT-Asia.2015.7387122&partnerID=40&md5=c27c6edd9c8a559e1b497a7bf01308e5 https://irepository.uniten.edu.my/handle/123456789/22865 7387122 Institute of Electrical and Electronics Engineers Inc. Scopus |
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Distributed power generation; Electric power factor; Electric power systems; Evolutionary algorithms; Fossil fuel power plants; Fossil fuels; Location; Optimization; Photovoltaic cells; Smart power grids; Solar energy; Solar power generation; Differential Evolution; Differential evolution method; Environmental concerns; Optimal selection; Power distributions; Power system constraints; Renewable energies; Technical loss; Electric power transmission networks |
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57192416703 |
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57192416703 Dang Huy P. Ramachandaramurthy V.K. Pesaran H.A.M. |
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Conference Paper |
author |
Dang Huy P. Ramachandaramurthy V.K. Pesaran H.A.M. |
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Dang Huy P. Ramachandaramurthy V.K. Pesaran H.A.M. Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
author_sort |
Dang Huy P. |
title |
Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
title_short |
Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
title_full |
Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
title_fullStr |
Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
title_full_unstemmed |
Optimal selection of location, sizing and power factor for solar PV plants using differential evolution |
title_sort |
optimal selection of location, sizing and power factor for solar pv plants using differential evolution |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2023 |
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1806426329466273792 |
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13.214268 |