Title :
Short-circuit test based maximum likelihood estimation of stability model of large generators
Author :
Wamkeue, R. ; Kamwa, Innocent ; Daï-Do, X.
Author_Institution :
Ecole Polytech., Montreal, Que., Canada
fDate :
6/1/1999 12:00:00 AM
Abstract :
This paper presents a time-domain statistical identification method for synchronous-machine linear parameters from the standard line-to-line short-circuit test. The measurements are recorded on a 13.75-MVA hydrogenerator at Hydro-Quebec´s Rapide-des-Quinze generating station. A complete mathematical model for synchronous machine asymmetrical test analysis is proposed. An efficient algorithm is built to accurately calculate the standard equivalent circuit from time-constants and operational inductances. The maximum likelihood estimator derived from the generalized least-squares method is then used for parameter identification. Validation of the estimated model response against the measured running-time domain data confirms the effectiveness of the proposed estimation technique
Keywords :
equivalent circuits; hydroelectric generators; least squares approximations; machine testing; machine theory; maximum likelihood estimation; parameter estimation; short-circuit currents; stability; synchronous generators; 13.75 MVA; Hydro-Quebec; Rapide-des-Quinze generating station; asymmetrical test analysis; estimated model response validation; generalized least-squares method; hydrogenerator; large generators; mathematical model; maximum likelihood estimation; maximum likelihood estimator; operational inductances; parameter identification; running-time domain data; short-circuit test; stability model; standard equivalent circuit; standard line-to-line short-circuit test; synchronous-machine linear parameters; time-constants; time-domain statistical identification method; Circuit testing; Equations; Equivalent circuits; Maximum likelihood estimation; Parameter estimation; Sequential analysis; Stability; Synchronous generators; Synchronous machines; Time domain analysis;
Journal_Title :
Energy Conversion, IEEE Transactions on