2009Unpublished venueRequires access

Self-tuning adaptive sensorless induction motor drive with the stator current-based MRAS speed estimator

Mateusz Dybkowski, Teresa Orłowska-Kowalska

Open publisher page 12 citations

Abstract

In the paper the analysis of the self-tuning vector controlled induction motor drive with a novel MRAS-type rotor speed and flux estimator is presented. The PI speed controller adjustment in the direct field oriented control structure is shown, basing on the analysis of the MRAS estimator stability analysis. Parameters of the PI speed controller are changed in the function of the rotor speed. Sensitivity of the sensorless IM drive with the MRASCCestimator is analyzed and is compared with system with full order observer (NFOA) and classical MRASF estimator. Dynamical performances of the vector control system with the current-type MRASCCestimator and self-tuning speed controller are tested in the laboratory set-up.

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What this paper is about

In the paper the analysis of the self-tuning vector controlled induction motor drive with a novel MRAS-type rotor speed and flux estimator is presented. The PI speed controller adjustment in the direct field oriented control structure is shown, basing on the analysis of the MRAS estimator stability analysis. Parameters of the PI speed controller are changed in the function of the rotor speed. Sensitivity of the sensorless IM drive with the MRASCCestimator is analyzed and is compared with system with full order observer (NFOA) and classical MRASF estimator. Dynamical performances of the vector control system with the current-type MRASCCestimator and self-tuning speed controller are tested in the laboratory set-up.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In the paper the analysis of the self-tuning vector controlled induction motor drive with a novel MRAS-type rotor speed and flux estimator is presented. The PI speed controller adjustment in the direct field oriented control structure is shown, basing on the analysis of the MRAS estimator stability analysis. Parameters of the PI speed controller are changed in the function of the rotor speed. Sensitivity of the sensorless IM drive with the MRASCCestimator is analyzed and is compared with system with full order observer (NFOA) and classical MRASF estimator. Dynamical performances of the vector control system with the current-type MRASCCestimator and self-tuning speed controller are tested in the laboratory set-up.

Key concepts: MRAS, Estimator, Control theory (sociology), Vector control, Controller (irrigation), Stator, Induction motor, Rotor (electric)

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