Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger
Charging (batteries); Electric vehicles; Irradiation; Maximum power point trackers; Photovoltaic effects; Power quality; Solar power generation; Vehicle performance; Condition; Constant temperature; Cuckoo search algorithms; Electric vehicles chargers; Maximum power; Maximum Power Point Tracking alg...
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2023
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my.uniten.dspace-263742023-05-29T17:09:39Z Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger Oruganti K.S.P. Vaithilingam C.A. Rajendran G. Ramasamy A. Gamboa R.A. 57221966580 24831942700 57211063292 16023154400 55744755500 Charging (batteries); Electric vehicles; Irradiation; Maximum power point trackers; Photovoltaic effects; Power quality; Solar power generation; Vehicle performance; Condition; Constant temperature; Cuckoo search algorithms; Electric vehicles chargers; Maximum power; Maximum Power Point Tracking algorithms; Maximum power point tracking techniques; Perturb observe; Solar photovoltaic system; Steady state; Particle swarm optimization (PSO) The study presented in this paper deals with the evaluation of maximum power point tracking (MPPT) algorithms to nullify the effect of varying irradiance and temperature inputs given to the solar photovoltaic (PV) powered standalone electric vehicle (EV) chargers. Three different MPPT algorithms, namely perturb and observe (PO), particle swarm optimization (PSO), and cuckoo search (CA) algorithm, are designed and the settling time to reach steady-state by overcoming the effect of variable irradiance and temperature along with partial shading is analyzed. In this analysis, four different conditions are introduced: constant irradiation and constant temperature, which is an ideal case followed by change in irradiation with constant temperature, constant irradiance with temperature change, and finally, both varying irradiance and temperature. Among the algorithms, the CA algorithm tracks to the maximum power of 19.9kW, 12.8kW, 12.3kW, and 19.42kW respectively for all conditions. The analysis confirmed that the CA algorithm remains superior with 24%, 67%, 79%, and 40% of a maximum power compared to others by achieving the steady state at 0.2 seconds. � 2021 IEEE. Final 2023-05-29T09:09:38Z 2023-05-29T09:09:38Z 2021 Conference Paper 10.1109/i-PACT52855.2021.9696741 2-s2.0-85126468121 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85126468121&doi=10.1109%2fi-PACT52855.2021.9696741&partnerID=40&md5=7d60c054484ec8ce74c339f5f6e65ebc https://irepository.uniten.edu.my/handle/123456789/26374 Institute of Electrical and Electronics Engineers Inc. Scopus |
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Charging (batteries); Electric vehicles; Irradiation; Maximum power point trackers; Photovoltaic effects; Power quality; Solar power generation; Vehicle performance; Condition; Constant temperature; Cuckoo search algorithms; Electric vehicles chargers; Maximum power; Maximum Power Point Tracking algorithms; Maximum power point tracking techniques; Perturb observe; Solar photovoltaic system; Steady state; Particle swarm optimization (PSO) |
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57221966580 |
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57221966580 Oruganti K.S.P. Vaithilingam C.A. Rajendran G. Ramasamy A. Gamboa R.A. |
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Conference Paper |
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Oruganti K.S.P. Vaithilingam C.A. Rajendran G. Ramasamy A. Gamboa R.A. |
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Oruganti K.S.P. Vaithilingam C.A. Rajendran G. Ramasamy A. Gamboa R.A. Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
author_sort |
Oruganti K.S.P. |
title |
Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
title_short |
Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
title_full |
Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
title_fullStr |
Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
title_full_unstemmed |
Performance Evaluation of Maximum Power Point Algorithms for Annulling the Effect of Irradiance and Temperature for Standalone Electric Vehicle Charger |
title_sort |
performance evaluation of maximum power point algorithms for annulling the effect of irradiance and temperature for standalone electric vehicle charger |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2023 |
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1806425637269798912 |
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13.222552 |