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Sensorless vector and direct torque control

Peter Vas
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TLDR
This paper presents a space-phasor model of A.C. machines based on artificial intelligence-based steady-state and transient analysis of electrical machines, estimators and investigates the role of magnetic saturation in the control of these machines.
Abstract
1. Introduction 2. The space-phasor model of A.C. machines 3. Vector and direct torque control of synchronous machines 4. Vector and direct torque control of induction machines 5. Torque control of switched reluctance motors 6. Effects of magnetic saturation 7. Artificial intelligence-based steady-state and transient analysis of electrical machines, estimators 8. Self-commissioning Index

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Citations
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Proceedings ArticleDOI

Kalman filter and redundant observer comparison for sensorless PMSM velocity control

TL;DR: In this article, a comparison made on two observers for permanent magnet synchronous machine control without mechanical sensor is presented, the structure estimating currents, velocity and position for PMSM is exposed.
Proceedings ArticleDOI

New generation of full low-floor trams: Control of wheel drives with permanent magnet synchronous motors

TL;DR: In this paper, a propulsion system concept for a new generation of full low-floor trams employing gearless wheel drives with surface-mounted permanent magnet synchronous motors (PMSM) is presented.
Dissertation

Control Strategies and Parameter Compensation for Permanent Magnet Synchronous Motor Drives

TL;DR: The primary focus is on controlling the motor in d-q axis using field oriented control technique along with the generation of space vector modulated pulses for the inverter driving the Brushless DC motor.

Doubly Fed Drives for Variable Speed Wind Turbines

TL;DR: In this paper, an overview of the power electronic inverters of interest to the field of wind energy is given and a topology for a laboratory model is selected for variable speed wind turbines.