Modeling and dynamic performance of a self-commutated photovoltaic inverter system
Journal Article
·
· IEEE Transactions on Energy Conversion; (USA)
- Purdue Univ., Lafayette, IN (USA). School of Electrical Engineering
In this paper, a three-phase self-commutated utility-interactive photovoltaic inverter system is described including its associated control system. A simplified computer model of this system is established and presented in block-diagram form. This model is suitable for use in transient stability programs. The accuracy of the simplified model is verified by comparing the response calculated therefrom with that of a highly detailed photovoltaic system model in which the inverter is represented in valve-by-valve detail.
- OSTI ID:
- 5713358
- Journal Information:
- IEEE Transactions on Energy Conversion; (USA), Journal Name: IEEE Transactions on Energy Conversion; (USA) Vol. 4:3; ISSN ITCNE; ISSN 0885-8969
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
14 SOLAR ENERGY
140600* -- Solar Energy-- Photovoltaic Power Systems
20 FOSSIL-FUELED POWER PLANTS
200104 -- Fossil-Fueled Power Plants-- Components
99 GENERAL AND MISCELLANEOUS
990220 -- Computers
Computerized Models
& Computer Programs-- (1987-1989)
COMPUTER CALCULATIONS
COMPUTERIZED SIMULATION
DYNAMIC LOADS
ELECTRICAL EQUIPMENT
ELECTRICAL TRANSIENTS
EQUIPMENT
INVERTERS
PERFORMANCE
PHOTOVOLTAIC POWER PLANTS
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SOLAR POWER PLANTS
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140600* -- Solar Energy-- Photovoltaic Power Systems
20 FOSSIL-FUELED POWER PLANTS
200104 -- Fossil-Fueled Power Plants-- Components
99 GENERAL AND MISCELLANEOUS
990220 -- Computers
Computerized Models
& Computer Programs-- (1987-1989)
COMPUTER CALCULATIONS
COMPUTERIZED SIMULATION
DYNAMIC LOADS
ELECTRICAL EQUIPMENT
ELECTRICAL TRANSIENTS
EQUIPMENT
INVERTERS
PERFORMANCE
PHOTOVOLTAIC POWER PLANTS
POWER PLANTS
SIMULATION
SOLAR POWER PLANTS
STABILITY
TRANSIENTS
VOLTAGE DROP