Two practical methods for fast optimizing the position of the high-speed permanent magnet synchronous motor (HSPMSM) are proposed in this article, utilizing the prediction methodology. They directly use the characteristics of the predicted stator current to demodulate the estimated position, without obtaining the back electromotive force first and second judgment. Both can simplify the sensorless control algorithm while ensuring precise position estimation, which are more conducive to the digital realization of HSPMSM sensorless control. The performances of the proposed methods are verified on a 1.1 kW, 30 000 r/min HSPMSM experimental platform, and compared with the traditional finite position set-phase locked loop and the common adaptive sliding mode observer. The experimental results prove the validity of the proposed methods for HSPMSM sensorless control.
High-Speed Permanent Magnet Synchronous Motor Sensorless Control Based on Stator Current Prediction
IEEE Transactions on Aerospace and Electronic Systems ; 60 , 5 ; 6433-6446
01.10.2024
9409821 byte
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
ELM–based sensorless speed control of permanent magnet synchronous machine
Online Contents | 2013
|ELM-based sensorless speed control of permanent magnet synchronous machine
Kraftfahrwesen | 2013
|British Library Online Contents | 2015
|BASE | 2021
|SENSORLESS SPEED CONTROL OF PERMANENT MAGNET SYNCHRONOUS MOTOR USING MODEL REFERENCE ADAPTIVE SYSTEM
BASE | 2019
|