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Vector control of a position sensorless SPMSM drive with RNN based stator flux estimator

journal contribution
posted on 2012-01-01, 00:00 authored by K Halder, M Habibullah, Naruttam Kumar Roy, M Rafiq
A position sensorless Surface Permanent Magnet Synchronous Motor (SPMSM) drive based on single layer Recurrent Neural Network (RNN) is presented in this paper. The motor equations are written in rotor fixed d-q reference frame. A PID controller is used to process the speed error to generate the reference torque current keeping the magnetizing current fixed. The RNN estimator is used to estimate flux components along the stator fixed stationary axes. The flux angle and the reference current phasor angle are used in vector rotator to generate the reference phase currents. Hysteresis current controller block controls the switching of the three phase inverter to apply voltage to the motor stator. Simulation studies on different operating conditions indicate the acceptability of the drive system. The proposed estimator can be used to accurately measure the motor fluxes and rotor angle over a wide speed range. The proposed control scheme is robust under load torque disturbances and motor parameter variations. It is also simple and low cost to implememnt in a practical environment

History

Journal

Journal of electrical engineering

Volume

12

Issue

2

Pagination

1 - 8

Publisher

Universitatea Politehnica din Timisoara

Location

[Romania]

ISSN

1582-4594

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

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