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Voltage-sourced converters in power systems : modeling, control, and applications

Author: Amirnaser Yazdani; Reza Iravani
Publisher: Oxford : Wiley, ©2010.
Edition/Format:   Print book : EnglishView all editions and formats
Database:WorldCat
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This book provides a comprehensive modeling approach, detailed control design methodologies and procedures, and wide coverage of the applications of voltage-sourced power electronic converters in  Read more...

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Document Type: Book
All Authors / Contributors: Amirnaser Yazdani; Reza Iravani
ISBN: 9780470521564 0470521562
OCLC Number: 573011067
Description: xix, 451 pages : illustrations ; 25 cm
Contents: <p>PREFACE xv <p>ACKNOWLEDGMENTS xvii <p>ACRONYMS xix <p>1 Electronic Power Conversion 1 <p>1.1 Introduction 1 <p>1.2 Power-Electronic Converters and Converter Systems 1 <p>1.3 Applications of Electronic Converters in Power Systems 3 <p>1.4 Power-Electronic Switches 4 <p>1.5 Classification of Converters 8 <p>1.6 Voltage-Sourced Converter (VSC) 10 <p>1.7 Basic Configurations 10 <p>1.8 Scope of the Book 20 <p>PART I FUNDAMENTALS 21 <p>2 DC/AC Half-Bridge Converter 23 <p>2.1 Introduction 23 <p>2.2 Converter Structure 23 <p>2.3 Principles of Operation 25 <p>2.4 Converter Switched Model 27 <p>2.5 Converter Averaged Model 32 <p>2.6 Nonideal Half-Bridge Converter 38 <p>3 Control of Half-Bridge Converter 48 <p>3.1 Introduction 48 <p>3.2 AC-Side Control Model of Half-Bridge Converter 48 <p>3.3 Control of Half-Bridge Converter 50 <p>3.4 Feed-Forward Compensation 53 <p>3.5 Sinusoidal Command Following 59 <p>4 Space Phasors and Two-Dimensional Frames 69 <p>4.1 Introduction 69 <p>4.2 Space-Phasor Representation of a Balanced Three-PhaseFunction 70 <p>4.3 Space-Phasor Representation of Three-Phase Systems 82 <p>4.4 Power in Three-Wire Three-Phase Systems 88 <p>4.5 -Frame Representation and Control of Three-PhaseSignals and Systems 91 <p>4.6 dq-Frame Representation and Control of Three-Phase Systems101 <p>5 Two-Level, Three-Phase Voltage-Sourced Converter115 <p>5.1 Introduction 115 <p>5.2 Two-Level Voltage-Sourced Converter 115 <p>5.3 Models and Control of Two-Level VSC 119 <p>5.4 Classification of VSC Systems 125 <p>6 Three-Level, Three-Phase, Neutral-Point Clamped,Voltage-Sourced Converter 127 <p>6.1 Introduction 127 <p>6.2 Three-Level Half-Bridge NPC 128 <p>6.3 PWM Scheme For Three-Level Half-Bridge NPC 130 <p>6.4 Switched Model of Three-Level Half-Bridge NPC 133 <p>6.5 Averaged Model of Three-Level Half-Bridge NPC 135 <p>6.6 Three-Level NPC 136 <p>6.7 Three-Level NPC with Capacitive DC-Side Voltage Divider144 <p>7 Grid-Imposed Frequency VSC System: Control in -Frame 160 <p>7.1 Introduction 160 <p>7.2 Structure of Grid-Imposed Frequency VSC System 160 <p>7.3 Real-/Reactive-Power Controller 161 <p>7.4 Real-/Reactive-Power Controller Based on Three-Level NPC181 <p>7.5 Controlled DC-Voltage Power Port 189 <p>8 Grid-Imposed Frequency VSC System: Control in dq-Frame204 <p>8.1 Introduction 204 <p>8.2 Structure of Grid-Imposed Frequency VSC System 205 <p>8.3 Real-/Reactive-Power Controller 206 <p>8.4 Current-Mode Control of Real-/Reactive-Power Controller217 <p>8.5 Real-/Reactive-Power Controller Based on Three-Level NPC232 <p>8.6 Controlled DC-Voltage Power Port 234 <p>9 Controlled-Frequency VSC System 245 <p>9.1 Introduction 245 <p>9.2 Structure of Controlled-Frequency VSC System 246 <p>9.3 Model of Controlled-Frequency VSC System 247 <p>9.4 Voltage Control 253 <p>10 Variable-Frequency VSC System 270 <p>10.1 Introduction 270 <p>10.2 Structure of Variable-Frequency VSC System 270 <p>10.3 Control of Variable-Frequency VSC System 273 <p>PART II APPLICATIONS 311 <p>11 Static Compensator (STATCOM) 313 <p>11.1 Introduction 313 <p>11.2 Controlled DC-Voltage Power Port 313 <p>11.3 STATCOM Structure 314 <p>11.4 Dynamic Model for PCC Voltage Control 315 <p>11.5 Approximate Model of PCC Voltage Dynamics 321 <p>11.6 STATCOM Control 322 <p>11.7 Compensator Design for PCC Voltage Controller 324 <p>11.8 Model Evaluation 324 <p>12 Back-to-Back HVDC Conversion System 334 <p>12.1 Introduction 334 <p>12.2 HVDC System Structure 334 <p>12.3 HVDC System Model 336 <p>12.4 HVDC System Control 342 <p>12.5 HVDC System Performance Under an Asymmetrical Fault 353 <p>13 Variable-SpeedWind-Power System 385 <p>13.1 Introduction 385 <p>13.2 Constant-Speed and Variable-Speed Wind-Power Systems385 <p>13.3 Wind Turbine Characteristics 388 <p>13.4 Maximum Power Extraction from A Variable-Speed Wind-PowerSystem 390 <p>13.5 Variable-Speed Wind-Power System Based on Doubly-FedAsynchronous Machine 393 <p>APPENDIXA: Space-Phasor Representation of SymmetricalThree-Phase Electric Machines 413 <p>A.1 Introduction 413 <p>A.2 Structure of Symmetrical Three-Phase Machine 413 <p>A.3 Machine Electrical Model 414 <p>A.4 Machine Equivalent Circuit 418 <p>A.5 Permanent-Magnet Synchronous Machine (PMSM) 421 <p>APPENDIX B: Per-Unit Values for VSC Systems 426 <p>B.1 Introduction 426 <p>REFERENCES 431 <p>INDEX 439
Responsibility: Amirnaser Yazdani and Reza Iravani.

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