Composite controller for a hybrid power plant based on PV array fed wind-driven induction generator with battery storage

Hybrid autonomous power plants based on wind‐driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power source for remote locations. In such schemes, a composite controller for both maximum power point tracking and voltage control has not been att...

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Published in:International journal of energy research Vol. 31; no. 5; pp. 515 - 524
Main Authors: Arutchelvi, M., Arul Daniel, S.
Format: Journal Article
Language:English
Published: Chichester, UK John Wiley & Sons, Ltd 01-04-2007
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Abstract Hybrid autonomous power plants based on wind‐driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power source for remote locations. In such schemes, a composite controller for both maximum power point tracking and voltage control has not been attempted so far. Hence a dc–dc converter with a dual control strategy of peak power tracking when the battery is connected and in voltage control mode in the absence of the battery is proposed in this paper. The development of such a controller is also presented. A d–q axes model of the proposed scheme is given and the results of the simulation of the entire scheme are also presented. The battery charging and discharging regimes have been distinctly identified for variations in irradiations and shaft‐torque conditions. Close proximity between the calculated peak power for different irradiations and the peak power observed from the simulated results brings out the significance of the proposed controller. Copyright © 2006 John Wiley & Sons, Ltd.
AbstractList Hybrid autonomous power plants based on wind-driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power source for remote locations. In such schemes, a composite controller for both maximum power point tracking and voltage control has not been attempted so far. Hence a dc-dc converter with a dual control strategy of peak power tracking when the battery is connected and in voltage control mode in the absence of the battery is proposed in this paper. The development of such a controller is also presented. A d-q axes model of the proposed scheme is given and the results of the simulation of the entire scheme are also presented. The battery charging and discharging regimes have been distinctly identified for variations in irradiations and shaft-torque conditions. Close proximity between the calculated peak power for different irradiations and the peak power observed from the simulated results brings out the significance of the proposed controller.
Hybrid autonomous power plants based on wind‐driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power source for remote locations. In such schemes, a composite controller for both maximum power point tracking and voltage control has not been attempted so far. Hence a dc–dc converter with a dual control strategy of peak power tracking when the battery is connected and in voltage control mode in the absence of the battery is proposed in this paper. The development of such a controller is also presented. A d–q axes model of the proposed scheme is given and the results of the simulation of the entire scheme are also presented. The battery charging and discharging regimes have been distinctly identified for variations in irradiations and shaft‐torque conditions. Close proximity between the calculated peak power for different irradiations and the peak power observed from the simulated results brings out the significance of the proposed controller. Copyright © 2006 John Wiley & Sons, Ltd.
Author Arul Daniel, S.
Arutchelvi, M.
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Cites_doi 10.1109/TEC.2004.827031
10.1109/TIA.2002.1003433
10.1002/pip.459
10.1080/15325000500488594
10.1109/63.471285
10.1002/er.670
10.1109/TPAS.1969.292346
10.1109/60.326466
10.1002/er.1157
10.1002/(SICI)1099-114X(199705)21:6<465::AID-ER273>3.0.CO;2-L
10.1016/0038-092X(84)90136-1
10.1049/ip-epa:20010656
10.1049/ip-epa:20000641
10.1109/60.577284
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Issue 5
Keywords dc-dc converter
duty-cycle
Electric batteries
Voltage control
Modeling
Hybrid system
Wind energy
Simulation
wind-solar system
maximum power point tracking
Photovoltaic array
Electric power production
Photovoltaic conversion
wind-driven induction generator
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Snippet Hybrid autonomous power plants based on wind‐driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power...
Hybrid autonomous power plants based on wind-driven induction generators excited by a photovoltaic (PV) array has been recently found to be a reliable power...
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SubjectTerms Applied sciences
dc-dc converter
duty-cycle
Energy
Equipments, installations and applications
Exact sciences and technology
maximum power point tracking
Natural energy
photovoltaic array
Photovoltaic conversion
Solar energy
wind-driven induction generator
wind-solar system
Title Composite controller for a hybrid power plant based on PV array fed wind-driven induction generator with battery storage
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