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Control of Non-conventional Synchronous Motors
About this book
Classical synchronous motors are the most effective device to drive industrial production systems and robots with precision and rapidity. However, numerous applications require efficient controls in non-conventional situations.
Firstly, this is the case with synchronous motors supplied by thyristor line-commutated inverters, or with synchronous motors with faults on one or several phases.
Secondly, many drive systems use non-conventional motors such as polyphase (more than three phases) synchronous motors, synchronous motors with double excitation, permanent magnet linear synchronous motors, synchronous and switched reluctance motors, stepping motors and piezoelectric motors.
This book presents efficient controls to improve the use of these non-conventional motors.
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Information
Table of contents
- Cover
- Title Page
- Copyright
- Introduction
- Chapter 1: Self-controlled Synchronous Motor: Principles of Function and Simplified Control Model
- Chapter 2: Self-controlled Synchronous Motor: Dynamic Model Including the Behavior of Damper Windings and Commutation Overlap
- Chapter 3: Synchronous Machines in Degraded Mode
- Chapter 4: Control of the Double-star Synchronous Machine Supplied by PWM Inverters
- Chapter 5: Vectorial Modeling and Control of Multiphase Machines with Non-salient Poles Supplied by an Inverter
- Chapter 6: Hybrid Excitation Synchronous Machines
- Chapter 7: Advanced Control of the Linear Synchronous Motor
- Chapter 8: Variable Reluctance Machines: Modeling and Control
- Chapter 9: Control of the Stepping Motor
- Chapter 10: Control of Piezoelectric Actuators
- List of Authors
- Index