DocumentCode :
3517691
Title :
A control strategy to reduce the effect of intermittent solar radiation and wind velocity in the hybrid photovoltaic/wind SCIG system without losing MPPT
Author :
Wandhare, Rupesh G. ; Agarwal, Vivek
Author_Institution :
Indian Inst. of Technol. - Bombay, Mumbai, India
fYear :
2012
fDate :
3-8 June 2012
Abstract :
The intermittent but complimentary nature of solar photovoltaic and wind mill generated power explored a new area of research for the hybrid PV/wind systems. This paper proposes a novel strategy for the control of power conditioning units to minimize the disturbances on the output power from the hybrid system, integrated with PV and wind turbine, in spite of highly intermittent nature of these sources. The proposed scheme balances the wide variation of power yield from wind and/or PV system and provides sufficient margin to the other sources (e.g. hydro, steam turbine, etc.) connected to the system to take over, so that to maintain power balance throughout the operation. The presented strategy makes use of high energy density ultracapacitor to absorb the effect of intermittent solar radiation and widely varying wind velocity. The MPPT associated with these sources remains unaffected and does not hamper overall generation from the system. The DC link of the conventional back to back topology of the wind farm is integrated with the PV panels with their MPPT trackers. The control strategy uses an inner fast current control loop and an outer slow voltage correcting loop for both the grid side VSI and the ultracapacitor converter. Simulation results are presented in the support of effectiveness of the proposed technique. A prototype is developed with the available 1.5kW PV installation, 1.2kW emulated wind turbine and ultracapacitor bank to validate some aspect of the proposed strategy.
Keywords :
electric current control; installation; maximum power point trackers; photovoltaic power systems; power convertors; power generation control; sunlight; supercapacitors; wind power plants; wind turbines; DC link; MPPT; PV installation; control strategy; grid side VSI; high energy density ultracapacitor converter; hybrid PV-wind system; hybrid photovoltaic-wind SCIG system; inner fast current control loop; intermittent solar radiation; outer slow voltage correcting loop; power 1.2 kW; power 1.5 kW; power balance; power conditioning units; solar photovoltaic power generation; wind farm; wind mill generated power; wind velocity; Hybrid power systems; Solar radiation; Supercapacitors; Voltage control; Wind power generation; Wind speed; Wind turbines; Bidirectional control; Distributed power generation; Hybrid power system; Photovoltaic systems; Power control; Supercapacitors; Wind energy generation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2012 38th IEEE
Conference_Location :
Austin, TX
ISSN :
0160-8371
Print_ISBN :
978-1-4673-0064-3
Type :
conf
DOI :
10.1109/PVSC.2012.6317860
Filename :
6317860
Link To Document :
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