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Vector Control of AC Drives.

Author: SyedA Nasar
Publisher: Boca Raton, FL : CRC Press, 2017.
Edition/Format:   eBook : Document : English : First editionView all editions and formats
Summary:
"Alternating current (AC) induction and synchronous machines are frequently used in variable speed drives with applications ranging from computer peripherals, robotics, and machine tools to railway traction, ship propulsion, and rolling mills. The notable impact of vector control of AC drives on most traditional and new technologies, the multitude of practical configurations proposed, and the absence of books  Read more...
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Genre/Form: Electronic books
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: SyedA Nasar
ISBN: 9780203734407 0203734408 9781351405591 1351405594
OCLC Number: 1014377702
Description: 1 online resource : text file, PDF
Contents: Cover; Title Page; Copyright Page; Table of Contents; Preface; CHAPTER 1: INTRODUCTION; 1.1 Electric Drives Topology; 1.2 Motor-Load Dynamics and Stability; 1.3 Typical Load Torques; 1.4 Multiquadraiit Operation; 1.5 Converters for AC Motors; 1.6 Performance Indices of Modern Electric Drives; 1.7 Vector Controllers; 1.8 Control Robustness; 1.9 Vector Control of AC Drives; References; CHAPTER 2: AC MOTOR MODELS FOR DRIVE APPLICATIONS; 2.1 General Remarks; 2.2 Phase Variable Model of an Induction Machine; 2.3 Complex Variable (Space Phaser) Model of Induction Machines. 2.4 The dq Model of an Induction Machine2.5 Effects of Saturation; 2.6 Phase Variable Model of Synchronous Machines; 2.7 Space Phasor Model of Synchronous Machines; 2.8 Phasor Diagram of the Synchronous Machine; 2.9 Summary; References; CHAPTER 3: FUNDAMENTALS OF INDUCTION MOTOR VECTOR CONTROL; 3.1 Introduction; 3.2 General Flux Control; 3.3 Vector Current Control; 3.4 Vector Voltage Control; 3.5 Constant Airgap Flux Operation; 3.6 Constant Rotor Flux Operation; 3.7 Constant Stator Flux Operation; 3.8 A Comparison of Constant Flux Operation; 3.9 Summary; References. CHAPTER 4: VECTOR CONTROL OF VOLTAGE-SOURCE INVERTER-FED INDUCTION MOTOR DRIVES4.1 Introduction; 4.2 Indirect Rotor Flux Orientation Current Control; 4.3 Indirect Rotor Rux Orientation; Vector Voltage Control; 4.4 Robust Rotor Flux Estimation (RFE) for Direct Vector Control; 4.5 Airgap Flux Orientation-Vector Current Control; 4.6 Direct Stator Flux Orientation-Vector Control; 4.7 Torque Vector Control (TVC); 4.8 Summary; References; CHAPTER 5: VECTOR CONTROL OF CURRENT-SOURCE INVERTER-FED INDUCTION MOTOR DRIVES; 5.1 Introduction; 5.2 Indirect Rotor Flux Orientation Vector Control. 5.3 Torque Vector Control (TVC)5.4 Summary; References; CHAPTER 6: VECTOR CONTROL OF SYNCHRONOUS MACHINES; 6.1 Introduction; 6.2 Synchronous Machine Equations; 6.3 Variable * Control; 6.4 Constant * Control; 6.5 Vector Current Control; 6.6 Voltage Current Control; 6.7 Torque Vector Control; 6.8 Steady State Operation for Given i*d; 6.9 Steady State Operation for a Given Stator Flux; 6.10 Summary; References; CHAPTER 7: VECTOR CONTROL OF PERMANENT MAGNET SYNCHRONOUS MOTOR DRIVES; 7.1 Introduction; 7.2 Indirect Vector d-q Current Control; 7.3 Indirect Vector Voltage Control. 7.4 Torque Vector Control (TVC)7.5 Summary; References; CHAPTER 8: VOLTAGE CONTROL OF VOLTAGE-SOURCE INVERTED-FED RELUCTANCE SYNCHRONOUS MOTOR DRIVES; 8.1 Introduction; 8.2 Saliency Ratio of the ALA Rotor; 8.3 Torque and Power Factor; 8.4 dq-Current Angle Vector Control; 8.5 Torque Vector Control; 8.6 Summary; References; CHAPTER 9: VECTOR CONTROL OF CYCLOCONVERTER-FED SYNCHRONOUS MOTOR DRIVES; 9.1 Introduction; 9.2 Stator Flux Orientation Current Control System; 9.3 Stator Flux Orientation Control Equations; 9.4 The Current Controller; 9.5 The Flux Calculator.

Abstract:

Alternating current (AC) induction and synchronous machines are frequently used in variable speed drives with applications ranging from computer peripherals, robotics, and machine tools to railway  Read more...

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