DocumentCode :
647651
Title :
A Type-4 wind power plant equivalent model for the analysis of electromagnetic transients in power systems
Author :
Hussein, Dalia N. ; Matar, Mahmoud ; Iravani, Reza
Author_Institution :
Univ. of Toronto, Toronto, ON, Canada
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. This paper introduces an accurate and computationally efficient reduced-order dynamic equivalent of a Type-4 based wind power plant (WPP) for the analysis of electromagnetic transients (EMTs) in the power system external to the WPP. The proposed model significantly reduces the computational resources and the simulation run time while preserving the WPP response-fidelity in the desired frequency range, e.g., 0 to 50 kHz. The proposed WPP equivalent model is composed of two parts; (i) a frequency-dependent equivalent model which represents the WPP passive component in the entire frequency range, and (ii) a dynamic equivalent model that represents the WPP supervisory control and the aggregated low-frequency dynamics of wind-turbine generator (WTG) units. The latter can be constructed from the (i) dynamic generic models, (ii) vendor-specific models, or (iii) user-defined models. The proposed model is incorporated as a software module in the PSCAD/EMTDC environment and its efficiency and accuracy are verified based on comparing the results with those of a detailed model.
Keywords :
EMTP; power system transients; wind power plants; wind turbines; EMT; PSCAD-EMTDC environment; WPP equivalent model; WPP passive component; WPP response-fidelity; WPP supervisory control; WTG; aggregated low-frequency dynamics; computational resource reduction; dynamic equivalent model; dynamic generic models; electromagnetic transient analysis; frequency 0 kHz to 50 kHz; frequency range; frequency-dependent equivalent model; power systems; reduced-order dynamic equivalent; simulation run time reduction; software module; type-4 wind power plant equivalent model; user-defined models; vendor-specific models; wind-turbine generator units; Analytical models; Computational efficiency; Computational modeling; Educational institutions; Frequency control; Power system dynamics; Wind power generation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Society General Meeting (PES), 2013 IEEE
Conference_Location :
Vancouver, BC
ISSN :
1944-9925
Type :
conf
DOI :
10.1109/PESMG.2013.6672170
Filename :
6672170
Link To Document :
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