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Parameter Estimation of Permanent Magnet Synchronous Machines - Zi Qiang Zhu, Kan Liu, Dawei Liang

Parameter Estimation of Permanent Magnet Synchronous Machines

Buch | Hardcover
288 Seiten
2025
Wiley-IEEE Press (Verlag)
978-1-394-28042-1 (ISBN)
CHF 205,95 inkl. MwSt
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Comprehensive reference delivering basic principles and state-of-the-art parameter estimation techniques for permanent magnet synchronous machines (PMSMs)

Parameter Estimation of Permanent Magnet Synchronous Machines reviews estimation techniques of the parameters of PMSMs, introducing basic models and techniques, as well as issues and solutions in parameter estimation challenges, including rank deficiency, inverter nonlinearity, and magnetic saturation. This book is supported by theories, experiments, and simulation examples for each technique covered.

Topics explored in this book include:



Electrical and mechanical parameter estimation techniques, including those based on current/voltage injection and position offset injection, under constant or variable speed and load for sensored or sensorless controlled PMSMs, accounting for magnetic saturation, cross-coupling, inverter nonlinearity, temperature effects, and more
Recursive least squares, the Kalman filter, model reference adaptive systems, Adaline neural networks, gradient-based methods, particle swarm optimization, and genetic algorithms
Applications of parameter estimation techniques for improvement of control performance, sensorless control, thermal condition monitoring, and fault diagnosis

This book is an essential reference for professionals working on the control and design of electrical machines, researchers studying electric vehicles, wind power generators, aerospace, industrial drives, automation systems, robots, and domestic appliances, as well as advanced undergraduate and graduate students in related programs of study.

Zi Qiang Zhu is a Fellow of the Royal Academy of Engineering and the Head of the Electrical Machines and Power Research Group at the University of Sheffield, UK. Kan Liu is the Assistant Dean of the College of Mechanical and Vehicle Engineering at Hunan University, China. Dawei Liang is a Postdoctoral Research Associate with the University of Sheffield, UK.

Authors xiii

Preface xv

List of Abbreviations xvii

List of Symbols xix

1 General Introduction 1

1.1 Introduction 1

1.2 Permanent Magnet Machines 2

1.3 Basic Equations and Machine Parameters 5

1.4 Drives and Control Strategies 11

1.5 Outline of Parameter Estimation Techniques 14

1.6 Scope of This Book 17

References 18

2 Critical Issues with Online Parameter Estimation 23

2.1 Rank-Deficient Problem 23

2.2 Non-linearity of VSI 29

2.3 Ill-Conditioned Problem 46

2.4 Summary 48

References 48

3 Online Estimation of Rotor Flux Linkage with the Aid of Thermocouples in Stator Windings 51

3.1 Introduction 51

3.2 Online Estimation of Rotor Flux Linkage with the Aid of Thermocouples in Stator Windings 52

3.3 Summary 57

References 57

4 Online Parameter Estimation Based on Current Injections 59

4.1 Introduction 59

4.2 Multi-parameter Estimation Based on Current Injection and Error Analysis 60

4.3 Winding Resistance and Rotor Flux Linkage Estimation Based on Current Injection under Constant Torque/Speed Control 68

4.4 Summary 72

References 73

5 Online Parameter Estimation Based on Position Offset Injection 75

5.1 Introduction 75

5.2 Phasor Analysis of Rotor Position Offset in PMSMs 76

5.3 Position Offset-based Estimation with ​i​d ​= 0 ​Under Constant Torque/Speed Control 77

5.4 Position Offset-based Estimation with i​d​​ = 0​ Under Variable Speed Control 89

5.5 Position Offset-based Estimation with i​d​ ≠ 0​ Under Constant Torque/Speed Control 94

5.6 Position Offset-based Estimation with i​d ​= 0​ and ​ i​d ​≠ 0​Under Constant and Variable Speed Control 99

5.7 Analysis of Amplitude of Position Offset Injection 103

5.8 Summary 108

References 109

6 Online Parameter Estimation Under Variable Speed Control 111

6.1 Introduction 111

6.2 Estimation of Stator Resistance, Inductances, and Rotor PM Flux Linkage 112

6.3 Estimation of dq-axis Flux Linkage Maps with Uncertainties of Circuit Resistance and Inverter Non-linearity 119

6.4 Summary 128

References 129

7 Estimation of Magnetic Saturation and Cross-coupling Based on High-frequency Signal Injection 131

7.1 Introduction 131

7.2 Magnetic Saturation Modelling and Time Delay Effect in HF Signal Injection 133

7.3 HF Rotating Voltage Injection Method 134

7.4 HF Pulsating Voltage Injection Method 137

7.5 Combined HF Rotating and Pulsating Voltage Injection Method 140

7.6 Experimental Results 142

7.7 Summary 146

References 147

8 Offline and Multi-step Parameter Estimation Methods 149

8.1 Introduction 149

8.2 Parameter Estimation at Standstill by Square Voltage Injection 150

8.3 Parameter Estimation at Standstill by HF Current Injection 153

8.4 Multi-step Parameter Estimation 158

8.5 Summary 163

References 163

9 Estimation of Mechanical Parameters 165

9.1 Introduction 165

9.2 Mechanical Parameter Estimation Methods 166

9.3 Experimental Results 170

9.4 Design of PI Speed Regulator 177

9.5 Summary 180

References 181

10 Modern Control and Optimization Theory–Based Parameter Estimation Algorithms 183

10.1 Introduction 183

10.2 Designed Parameter Estimation Scheme 183

10.3 Recursive Least-Squares 185

10.4 Kalman Filter 187

10.5 Model Reference Adaptive System 190

10.6 Adaline Neural Network 192

10.7 Gradient-Based Methods 195

10.8 Particle Swarm Optimization 198

10.9 Genetic Algorithm 201

10.10 Summary 203

References 205

11 Applications of Parameter Estimation 209

11.1 Introduction 209

11.2 Improvement in Control Performance 210

11.3 Improvement in Sensorless Control 216

11.4 Precise Torque Estimation 229

11.5 Thermal Condition Monitoring 232

11.6 Fault Diagnosis 234

11.7 Summary 237

References 238

Appendix A: Finite Element Calculation of Winding Inductances 243

Appendix B: Specifications of Prototype Machines and Experimental Platforms 251

Index 255

Erscheinungsdatum
Reihe/Serie IEEE Press Series on Control Systems Theory and Applications
Sprache englisch
Gewicht 737 g
Themenwelt Technik Elektrotechnik / Energietechnik
ISBN-10 1-394-28042-4 / 1394280424
ISBN-13 978-1-394-28042-1 / 9781394280421
Zustand Neuware
Informationen gemäß Produktsicherheitsverordnung (GPSR)
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