Title
Procedure for estimation of equivalent model parameters for a wind farm using post-disturbance on-line measurement data.
Abstract
Fixed speed wind turbines (FSWT) based on induction generators (IGs) are widely used due to their simple construction and ease of operation. Proper operation and control of a wind farm composed of FSWTs requires accurate models of the main FSWT elements, including the IG. This paper presents a procedure for using on-line measurements of the post-disturbance system to estimate the equivalent model parameters of a wind farm. This procedure is the wind farm equivalent application: WFEq Application and it is suitable for use in as part of Wide Area Monitoring, Protection, and Control (WAMPAC). The performance and robustness of the WFEq are evaluated using two test systems, where the parameters of the WFEq model are estimated using the Nonlinear Least Squares method. The inputs needed to use the WFEq application are measurements of the active and reactive power after a disturbance to the system frequency. Results of the equivalent model estimation procedure demonstrate a high quality of performance in terms of both convergence and accuracy.
Year
DOI
Venue
2011
10.1109/ISGTEurope.2011.6162775
ISGT Europe
Keywords
Field
DocType
asynchronous generators,power system measurement,wind turbines,equivalent model parameters,fixed speed wind turbines,induction generators,nonlinear least squares method,post-disturbance on-line measurement data,wide area monitoring protection and control,wind farm,Fixed speed wind turbines,generator modeling,induction machine,nonlinear least squares,parameter estimation
Convergence (routing),Control theory,AC power,Control engineering,Robustness (computer science),Equivalent model,Estimation theory,Non-linear least squares,Engineering,Induction generator,Wind power
Conference
ISSN
Citations 
PageRank 
2165-4816
0
0.34
References 
Authors
0
4
Name
Order
Citations
PageRank
Francisco Gonzalez-Longatt1228.11
Pawel Regulski210012.88
Peter Wall3263.20
Vladimir V. Terzija48014.28