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An extended electromotive force model for sensorless control of interior permanent-magnet synchronous motors

IEEE Transactions on Industrial Electronics · 2003 · Vol. 50(2) · pp. 288–295
Zhiqian ChenM. TomitaShinji DokiS. Okuma

Abstract

During the last decade, many sensorless control methods have been proposed for surface permanent-magnet synchronous motors (SPMSMs) based on the estimation of electromotive force (EMF) in which the motor's position information is contained. However, these methods cannot be applied to interior PMSMs (IPMSMs) directly, because the position information is contained in not only the EMF, but also the inductance of stators. In this paper, a new mathematical model for IPMSMs is proposed and an extended EMF is defined, which includes both position information from the EMF and the stator inductance. By using the newly proposed model, sensorless controls proposed for SPMSMs can easily be applied to IPMSMs. As an example, a disturbance observer is studied and the experimental results show that the proposed method on the proposed model is very effective.

Sensorless Control of Electric MotorsElectric Motor Design and AnalysisMagnetic Bearings and Levitation DynamicsInductanceControl theory (sociology)Electromotive forceCounter-electromotive forceStatorPosition (finance)Synchronous motorObserver (physics)MagnetComputer science
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An extended electromotive force model for sensorless control of interior permanent-magnet synchronous motors · Scinovex