Advanced Electric Drives: Analysis, Control, and Modeling Using MATLAB / Simulink
Advanced Electric Drives utilizes a physics-based approach to explain the fundamental concepts of modern electric drive control and its operation under dynamic conditions.
Chapter 1: Applications: Speed and Torque Control
Chapter 2: Induction Machine Equations in Phase Quantities: Assisted by Space Vectors
Chapter 3 : Dynamic Analysis of Induction Machines in Terms of dq Windings
Chapter 4: Vector Control of Induction-Motor Drives: A Qualitative Examination
Chapter 5: Mathematical Description of Vector Control in Induction Machines
Chapter 6: Detuning Effects in Induction Motor Vector Control
Chapter 7: Dynamic Analysis of Doubly Fed Induction Generators and Their Vector Control
Chapter 8: Space Vector Pulse Width-Modulated (SV-PWM) Inverters
Chapter 9: Direct Torque Control (DTC) and Encoderless Operation of Induction Motor Drives
Chapter 10: Vector Control of Permanent-Magnet Synchronous Motor Drives
Chapter 11: Switched-Reluctance Motor (SRM) Drives