Determination of the inductance parameters for the decoupled d-q model of double-star permanentmagnet synchronous machines

Analytical models are the key tools in the model-based control design of electric drives. The inductances together with the stator resistance are the fundamental parameters of these models. In this study, three methods to determine the inductances of the decoupled d-q model of double-star permanent-...

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Bibliographic Details
Published inIET electric power applications Vol. 8; no. 2; p. 39
Main Authors Kallio, Samuli, Karttunen, Jussi, Peltoniemi, Pasi, Silventoinen, Pertti, Pyrhönen, Olli
Format Journal Article
LanguageEnglish
Published Stevenage The Institution of Engineering & Technology 01.02.2014
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Summary:Analytical models are the key tools in the model-based control design of electric drives. The inductances together with the stator resistance are the fundamental parameters of these models. In this study, three methods to determine the inductances of the decoupled d-q model of double-star permanent-magnet (PM) synchronous machines are studied. These methods have commonly been used to determine the inductances of conventional three-phase PM machines. Two of the evaluated methods are based on the phase-variable inductance waveforms and flux linkages, and are thus analysed with finite-element analyses only. The third method, based on the analytical stator voltage equations, can be applied straightforwardly with the real drive system supplied with voltage-source inverters (VSI). This method requires only the knowledge of the rotor position and the existing current measurements of the VSIs that are used for the current control. Experimental results are provided to verify the applicability of the voltage-equation-based method to determine the inductances.
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ISSN:1751-8660
1751-8679
DOI:10.1049/iet-epa.2013.0195