Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode

This paper proposes a hybrid system which consists of a photovoltaic panel, wind turbine, proton exchange membrane fuel cell (PEMFC), electrolyzer, super capacitor, power convertor and a three-phase variation load. The load supplied is based on the photovoltaic panel and wind turbine, while the fuel...

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Main Authors: Palizban, O., Rezaei, M.A., Mekhilef, Saad
Format: Conference or Workshop Item
Language:English
Published: 2011
Subjects:
Online Access:http://eprints.um.edu.my/4751/1/Active_and_reactive_power_control_for_a_hybrid_system_with_photovoltaic_panel%2C_wind_turbine%2C_fuel_cells%2C_electrolyzer_and_super_capacitor_in_off-grid_mode.pdf
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author Palizban, O.
Rezaei, M.A.
Mekhilef, Saad
author_facet Palizban, O.
Rezaei, M.A.
Mekhilef, Saad
author_sort Palizban, O.
collection UM
description This paper proposes a hybrid system which consists of a photovoltaic panel, wind turbine, proton exchange membrane fuel cell (PEMFC), electrolyzer, super capacitor, power convertor and a three-phase variation load. The load supplied is based on the photovoltaic panel and wind turbine, while the fuel cells are back-up for compensating possible power load shortage. The surplus of power produced will be stored in a hydrogen tank by an electrolyzer system when the PV panel and wind turbine produce more power than required. The capacitor banks are used in parallel with other sources in order to reduce DC bus variation. Matlab software is chosen for the hybrid system simulation.
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spelling um.eprints-47512019-10-25T04:02:40Z http://eprints.um.edu.my/4751/ Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode Palizban, O. Rezaei, M.A. Mekhilef, Saad TA Engineering (General). Civil engineering (General) TK Electrical engineering. Electronics Nuclear engineering This paper proposes a hybrid system which consists of a photovoltaic panel, wind turbine, proton exchange membrane fuel cell (PEMFC), electrolyzer, super capacitor, power convertor and a three-phase variation load. The load supplied is based on the photovoltaic panel and wind turbine, while the fuel cells are back-up for compensating possible power load shortage. The surplus of power produced will be stored in a hydrogen tank by an electrolyzer system when the PV panel and wind turbine produce more power than required. The capacitor banks are used in parallel with other sources in order to reduce DC bus variation. Matlab software is chosen for the hybrid system simulation. 2011 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.um.edu.my/4751/1/Active_and_reactive_power_control_for_a_hybrid_system_with_photovoltaic_panel%2C_wind_turbine%2C_fuel_cells%2C_electrolyzer_and_super_capacitor_in_off-grid_mode.pdf Palizban, O. and Rezaei, M.A. and Mekhilef, Saad (2011) Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode. In: 2011 IEEE International Conference on Control System, Computing and Engineering, ICCSCE 2011, Penang. http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6190560
spellingShingle TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
Palizban, O.
Rezaei, M.A.
Mekhilef, Saad
Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title_full Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title_fullStr Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title_full_unstemmed Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title_short Active and reactive power control for a hybrid system with photovoltaic panel, wind turbine, fuel cells, electrolyzer and super capacitor in off-grid mode
title_sort active and reactive power control for a hybrid system with photovoltaic panel wind turbine fuel cells electrolyzer and super capacitor in off grid mode
topic TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.um.edu.my/4751/1/Active_and_reactive_power_control_for_a_hybrid_system_with_photovoltaic_panel%2C_wind_turbine%2C_fuel_cells%2C_electrolyzer_and_super_capacitor_in_off-grid_mode.pdf
work_keys_str_mv AT palizbano activeandreactivepowercontrolforahybridsystemwithphotovoltaicpanelwindturbinefuelcellselectrolyzerandsupercapacitorinoffgridmode
AT rezaeima activeandreactivepowercontrolforahybridsystemwithphotovoltaicpanelwindturbinefuelcellselectrolyzerandsupercapacitorinoffgridmode
AT mekhilefsaad activeandreactivepowercontrolforahybridsystemwithphotovoltaicpanelwindturbinefuelcellselectrolyzerandsupercapacitorinoffgridmode