M-Mode SVPWM Technique for Power Converters. ([2019])
- Record Type:
- Book
- Title:
- M-Mode SVPWM Technique for Power Converters. ([2019])
- Main Title:
- M-Mode SVPWM Technique for Power Converters
- Further Information:
- Note: Bo Zhang and Dongyuan Qiu.
- Authors:
- Zhang, Bo, 1962 October 23
Qiu, Dongyuan - Contents:
- Intro; Preface; Acknowledgements; Contents; About the Authors; 1 Introduction; 1.1 Review of PWM Converter; 1.2 SPWM Methods; 1.2.1 Natural Sampling SPWM; 1.2.2 Symmetric Regular Sampling SPWM; 1.2.3 Asymmetric Regular Sampling SPWM; 1.2.4 Equal-Area Sampling SPWM; 1.2.5 Selective Harmonic Elimination PWM; 1.3 SVPWM Method; 1.3.1 Principle of SVPWM; 1.3.2 Relationships Between SPWM and SVPWM; 1.4 Proposition of m-Mode SVPWM; 1.4.1 Multi-solution Problem of SPWM; 1.4.2 Computing Complex Problem of SVPWM; 1.4.3 Ideal of m-Mode SVPWM; 1.5 Arrangement of This Book; References 2 m-Mode SVPWM Principle of Power Electronic Converter2.1 Definition of State Controllability; 2.2 Criterion of State Controllability; 2.3 m-Mode Controllability; 2.4 m-Mode SVPWM; 2.5 Summary; References; 3 3-Mode SVPWM for Three-Phase Four-Wire Inverter; 3.1 Operating Principle of Three-Phase Four-Wire Inverter; 3.2 Switched Linear System Model; 3.3 m-Mode Controllability; 3.4 3-Mode SVPWM Strategy; 3.4.1 3-Mode SVPWM I; 3.4.2 3-Mode SVPWM II; 3.5 Characteristic Analysis; 3.5.1 Output Voltage; 3.5.2 Switching Frequency; 3.5.3 Harmonic Contents and Efficiency; 3.5.4 Improved 3-Mode SVPWM 3.5.5 Application on Three-Phase Three-Wire Inverter3.6 Summary; References; 4 4-Mode SVPWM for Three-Phase Four-Wire Inverter; 4.1 4-Mode Controllability; 4.2 4-Mode SVPWM Strategy; 4.2.1 4-Mode SVPWM I; 4.2.2 4-Mode SVPWM II; 4.2.3 4-Mode SVPWM III; 4.3 Characteristic Analysis; 4.3.1 Switching Times and SwitchingIntro; Preface; Acknowledgements; Contents; About the Authors; 1 Introduction; 1.1 Review of PWM Converter; 1.2 SPWM Methods; 1.2.1 Natural Sampling SPWM; 1.2.2 Symmetric Regular Sampling SPWM; 1.2.3 Asymmetric Regular Sampling SPWM; 1.2.4 Equal-Area Sampling SPWM; 1.2.5 Selective Harmonic Elimination PWM; 1.3 SVPWM Method; 1.3.1 Principle of SVPWM; 1.3.2 Relationships Between SPWM and SVPWM; 1.4 Proposition of m-Mode SVPWM; 1.4.1 Multi-solution Problem of SPWM; 1.4.2 Computing Complex Problem of SVPWM; 1.4.3 Ideal of m-Mode SVPWM; 1.5 Arrangement of This Book; References 2 m-Mode SVPWM Principle of Power Electronic Converter2.1 Definition of State Controllability; 2.2 Criterion of State Controllability; 2.3 m-Mode Controllability; 2.4 m-Mode SVPWM; 2.5 Summary; References; 3 3-Mode SVPWM for Three-Phase Four-Wire Inverter; 3.1 Operating Principle of Three-Phase Four-Wire Inverter; 3.2 Switched Linear System Model; 3.3 m-Mode Controllability; 3.4 3-Mode SVPWM Strategy; 3.4.1 3-Mode SVPWM I; 3.4.2 3-Mode SVPWM II; 3.5 Characteristic Analysis; 3.5.1 Output Voltage; 3.5.2 Switching Frequency; 3.5.3 Harmonic Contents and Efficiency; 3.5.4 Improved 3-Mode SVPWM 3.5.5 Application on Three-Phase Three-Wire Inverter3.6 Summary; References; 4 4-Mode SVPWM for Three-Phase Four-Wire Inverter; 4.1 4-Mode Controllability; 4.2 4-Mode SVPWM Strategy; 4.2.1 4-Mode SVPWM I; 4.2.2 4-Mode SVPWM II; 4.2.3 4-Mode SVPWM III; 4.3 Characteristic Analysis; 4.3.1 Switching Times and Switching Frequency; 4.3.2 Output Voltage; 4.3.3 Comparison with 3-Mode SVPWM; 4.4 Geometric Meaning of m-Mode SVPWM; 4.5 Summary; Reference; 5 6-Mode SVPWM for Nine-Switch Dual-Output Inverter; 5.1 Operating Principle of Nine-Switch Dual-Output Inverter; 5.2 6-Mode SVPWM Strategy 5.2.1 Switched Linear System Model5.2.2 m-Mode Controllability; 5.2.3 6-Mode SVPWM; 5.3 Simulation and Experimental Results; 5.4 Other m-Mode SVPWM for Nine-Switch Dual-Output Inverter; 5.5 Summary; References; 6 6-Mode SVPWM for Five-Leg Dual-Output Inverter; 6.1 Operating Principle of Five-Leg Dual-Output Inverter; 6.2 6-Mode SVPWM Strategy; 6.2.1 Switched Linear System Model; 6.2.2 m-Mode Controllability; 6.2.3 6-Mode SVPWM; 6.3 Simulation and Experimental Results; 6.4 Comparison with Conversional SVPWM; 6.5 Summary; References; 7 m-Mode SVPWM for Multilevel Inverter 7.1 Overview of Multilevel Inverter7.1.1 Diode-Clamped Multilevel Inverter; 7.1.2 Flying-Capacitor Multilevel Inverter; 7.1.3 Cascaded-Bridge Multilevel Inverter; 7.2 Conventional SVPWM for Diode-Clamped Three-Level Inverter; 7.3 m-Mode SVPWM for Diode-Clamped Three-Level Inverter; 7.3.1 Switched Linear System Model; 7.3.2 m-Mode Controllability; 7.3.3 9-Mode SVPWM; 7.3.4 12-Mode SVPWM; 7.3.5 18-Mode SVPWM; 7.4 Comparison of m-Mode SVPWM and Conventional SVPWM; 7.4.1 DC Voltage Utilization; 7.4.2 Total Harmonic Distortion; 7.4.3 Efficiency Analysis; 7.4.4 Experimental Verification … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2019
- Copyright Date:
- 2019
- Extent:
- 1 online resource
- Subjects:
- 621.319/13
Electric current converters
TECHNOLOGY & ENGINEERING / Mechanical
Electric current converters
Electronic books
Electronic books - Languages:
- English
- ISBNs:
- 9789811313820
9811313822 - Related ISBNs:
- 9789811313813
9811313814 - Notes:
- Note: Includes bibliographical references and index.
Note: Online resource; title from PDF title page (EBSCO, viewed January 31, 2019). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.407542
- Ingest File:
- 02_479.xml