DocumentCode :
261714
Title :
Equivalent circuit model estimation of induction machines under elevated temperature conditions
Author :
Sumislawska, Malgorzata ; Agbaje, Oluwaleke ; Kavanagh, Darren F. ; Bumham, Keith J.
Author_Institution :
Control Theor. & Applic. Centre, Coventry Univ., Coventry, UK
fYear :
2014
fDate :
9-11 July 2014
Firstpage :
413
Lastpage :
418
Abstract :
This paper explores performing identifiability analysis on the equivalent circuit model (ECM) parameters of an electric machine (EM) using its impedance response. When modelling the ECM of an EM for room temperature conditions, some of the ECM parameters can be obtained from the manufacturer´s data. However, as the temperature of an EM increases this significantly changes the underlying physics (resistivity, capacitance and inductance) of machine parameters, therefore the manufacturers data become inaccurate for equivalent circuit modelling purposes. ECM parameters need to be obtained from the frequency response under the different temperature conditions. To achieve this a nonlinear optimisation scheme with constraints is proposed for the purpose of ECM parameter identification, whereby a temperature-dependent ECM is derived. This work has important applications in EM design and condition monitoring and provides a valuable precursor towards developing age-dependent models.
Keywords :
asynchronous machines; condition monitoring; equivalent circuits; frequency response; nonlinear programming; parameter estimation; EM; age-dependent model; condition monitoring; electric machine; elevated room temperature conditions; frequency response; impedance response; induction machine equivalent circuit model estimation; nonlinear optimisation scheme; temperature-dependent ECM parameter identification; Electronic countermeasures; Frequency response; Integrated circuit modeling; Resonant frequency; Stator windings; Temperature measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control (CONTROL), 2014 UKACC International Conference on
Conference_Location :
Loughborough
Type :
conf
DOI :
10.1109/CONTROL.2014.6915176
Filename :
6915176
Link To Document :
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