Control of Power Electronic Converters and Systems
eBook - ePub

Control of Power Electronic Converters and Systems

Volume 3

  1. 718 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Control of Power Electronic Converters and Systems

Volume 3

About this book

Control of Power Electronic Converters and Systems, Volume 3, explores emerging topics in the control of power electronics and converters, including the theory behind control, and the practical operation, modeling, and control of basic power system models. This book introduces the most important controller design methods, including both analog and digital procedures. This reference explains the dynamic characterization of terminal behavior for converters, as well as preserving the stability and power quality of modern power systems. Useful for engineers in emerging applications of power electronic converters and those combining control design methods into different applications in power electronics technology. Addressing controller interactions - in light of increasing renewable energy integration and related challenges with stability and power quality - is becoming more frequent in power converters and passive components. - Discusses different applications and their control in integrated renewable energy systems - Introduces the most important controller design methods, both in analog and digital - Describes different important applications to be used in future industrial products - Explains the dynamic characterization of terminal behavior for converters

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Yes, you can access Control of Power Electronic Converters and Systems by Frede Blaabjerg in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Electrical Engineering & Telecommunications. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Title of Book
  2. Cover image
  3. Title page
  4. Table of Contents
  5. Copyright
  6. Contributors
  7. Preface
  8. Chapter 1 Advanced control of power electronic systems—an overview of methods
  9. Chapter 2 Robust design and passivity control methods
  10. Chapter 3 Sliding mode controllers in power electronic systems
  11. Chapter 4 Model predictive control of power converters, motor drives, and microgrids
  12. Chapter 5 Adaptive control in power electronic systems
  13. Chapter 6 Machine learning technique for low-frequency modulation techniques in power converters
  14. Chapter 7 Overview of stability analysis methods in power electronics
  15. Chapter 8 Cyber security in power electronic systems
  16. Chapter 9 Advanced modeling and control of voltage source converters with LCL filters
  17. Chapter 10 Phase-locked loops and their design
  18. Chapter 11 Stability and robustness improvement of power converters
  19. Chapter 12 High switching frequency three-phase current-source converters and their control
  20. Chapter 13 High-power current source converters
  21. Chapter 14 Parallel operation of power converters and their filters
  22. Chapter 15 Advanced power control of photovoltaic systems
  23. Chapter 16 Low voltage ride-through operation of single-phase PV systems
  24. Chapter 17 Grid-following and grid-forming PV and wind turbines
  25. Chapter 18 Virtual inertia operation of renewables
  26. Chapter 19 Virtual inertia emulating in power electronic–based power systems
  27. Chapter 20 Abnormal operation of wind turbine systems
  28. Chapter 21 Wind farm control and optimization
  29. Chapter 22 Power converters and control of LEDs
  30. Index