Produktbild: Predictive Control of Power Converters and Electrical Drives

Predictive Control of Power Converters and Electrical Drives

Aus der Reihe IEEE Press

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

01.09.2012

Verlag

John Wiley & Sons Inc

Seitenzahl

248

Maße (L/B/H)

25/17,5/1,8 cm

Gewicht

616 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-96398-1

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

01.09.2012

Verlag

John Wiley & Sons Inc

Seitenzahl

248

Maße (L/B/H)

25/17,5/1,8 cm

Gewicht

616 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-96398-1

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Predictive Control of Power Converters and Electrical Drives
  • Foreword xi

    Preface xiii

    Acknowledgments xv

    Part One INTRODUCTION

    1 Introduction 3

    1.1 Applications of Power Converters and Drives 3

    1.2 Types of Power Converters 5

    1.2.1 Generic Drive System 5

    1.2.2 Classification of Power Converters 5

    1.3 Control of Power Converters and Drives 7

    1.3.1 Power Converter Control in the Past 7

    1.3.2 Power Converter Control Today 10

    1.3.3 Control Requirements and Challenges 11

    1.3.4 Digital Control Platforms 12

    1.4 Why Predictive Control is Particularly Suited for Power Electronics 13

    1.5 Contents of this Book 15

    References 16

    2 Classical Control Methods for Power Converters and Drives 17

    2.1 Classical Current Control Methods 17

    2.1.1 Hysteresis Current Control 18

    2.1.2 Linear Control with Pulse Width Modulation or Space Vector Modulation 20

    2.2 Classical Electrical Drive Control Methods 24

    2.2.1 Field Oriented Control 24

    2.2.2 Direct Torque Control 26

    2.3 Summary 30

    References 30

    3 Model Predictive Control 31

    3.1 Predictive Control Methods for Power Converters and Drives 31

    3.2 Basic Principles of Model Predictive Control 32

    3.3 Model Predictive Control for Power Electronics and Drives 34

    3.3.1 Controller Design 35

    3.3.2 Implementation 37

    3.3.3 General Control Scheme 38

    3.4 Summary 38

    References 38

    Part Two MODEL PREDICTIVE CONTROL APPLIED TO POWER CONVERTERS

    4 Predictive Control of a Three-Phase Inverter 43

    4.1 Introduction 43

    4.2 Predictive Current Control 43

    4.3 Cost Function 44

    4.4 Converter Model 44

    4.5 Load Model 48

    4.6 Discrete-Time Model for Prediction 49

    4.7 Working Principle 50

    4.8 Implementation of the Predictive Control Strategy 50

    4.9 Comparison to a Classical Control Scheme 59

    4.10 Summary 63

    References 63

    5 Predictive Control of a Three-Phase Neutral-Point Clamped Inverter 65

    5.1 Introduction 65

    5.2 System Model 66

    5.3 Linear Current Control Method with Pulse Width Modulation 70

    5.4 Predictive Current Control Method 70

    5.5 Implementation 72

    5.5.1 Reduction of the Switching Frequency 74

    5.5.2 Capacitor Voltage Balance 77

    5.6 Summary 78

    References 79

    6 Control of an Active Front-End Rectifier 81

    6.1 Introduction 81

    6.2 Rectifier Model 84

    6.2.1 Space Vector Model 84

    6.2.2 Discrete-Time Model 85

    6.3 Predictive Current Control in an Active Front-End 86

    6.3.1 Cost Function 86

    6.4 Predictive Power Control 89

    6.4.1 Cost Function and Control Scheme 89

    6.5 Predictive Control of an AC-DC-AC Converter 92

    6.5.1 Control of the Inverter Side 92

    6.5.2 Control of the Rectifier Side 94

    6.5.3 Control Scheme 94

    6.6 Summary 96

    References 97

    7 Control of a Matrix Converter 99

    7.1 Introduction 99

    7.2 System Model 99

    7.2.1 Matrix Converter Model 99

    7.2.2 Working Principle of the Matrix Converter 101

    7.2.3 Commutation of the Switches 102

    7.3 Classical Control: The Venturini Method 103

    7.4 Predictive Current Control of the Matrix Converter 104

    7.4.1 Model of the Matrix Converter for Predictive Control 104

    7.4.2 Output Current Control 107

    7.4.3 Output Current Control with Minimization of the Input Reactive Power 108

    7.4.4 Input Reactive Power Control 113

    7.5 Summary 113

    References 114

    Part Three MODEL PREDICTIVE CONTROL APPLIED