
Application of Flexible AC Transmission System Devices in Wind Energy Conversion Systems
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This book presents information about the application of various flexible AC transmission system devices to wind energy conversion systems. Devices such as unified power flow controllers, superconducting magnetic energy storage and static synchronous compensators are covered in this book. Chapters detail features of the topology and basic control systems of each device. Additionally, case studies are presented where necessary to demonstrate practical applications.
This book is a reference for students and technicians studying wind power and AC transmission systems in advanced engineering courses.
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Content
- Intro
- CONTENTS
- PREFACE
- CONFLICT OF INTEREST
- ACKNOWLEDGEMENTS
- Overview of Wind Energy Conversion Systems and Flexible AC Transmission Systems
- INTRODUCTION
- WIND ENERGY SYSTEM
- WIND TURBINE
- WIND ENERGY CONVERSION SYSTEMS
- Fixed Speed Wind Turbine
- Variable Speed Wind Turbine
- Partly Variable Speed Wind Turbine
- Full Converter Variable Speed Wind Turbine
- Doubly Fed Induction Generator Wind Turbine
- Impact of Wind Energy Integration into Electricity Grid
- Power Variation
- Harmonics
- Voltage Fluctuation
- Flickers
- Fault Ride through and Grid Codes
- OVERVIEW OF FACTS DEVICES
- SUMMARY
- REFERENCES
- Applications of Unified Power Flow Controller in Wind Energy Conversion System
- INTRODUCTION
- Shunt Converter
- Series Converter
- UPFC Applications
- Application of UPFC to Improve Overall Performance of DFIG-based WECS During Grid Side Faults
- Proposed Control System
- Hysteresis Current Controller
- Proportional Integral Controller
- Case Study 1: Low Voltage Ride Through
- Case Study 2: High Voltage Ride Through
- Case Study 3: Sub-Synchronous Resonance
- Application of UPFC to Improve the Performance of DFIG During Converter Station Faults
- Faults within Rotor Side Converter
- Faults within the Grid Side Converter
- Impact of UPFC During Converter Station Faults
- Fire-through Fault
- SUMMARY
- REFERENCES
- Superconducting Magnetic Energy Storage, a Promising FACTS Device for Wind Energy Conversion Systems
- INTRODUCTION
- SYSTEM UNDER STUDY
- SMES UNIT CONFIGURATION
- SMES CONTROLLER
- APPLICATION OF SMES ON DFIG-BASED WECS DURING VOLTAGE SAG
- APPLICATION OF SMES ON DFIG-BASED WECS DURING VOLTAGE SWELL
- APPLICATION OF SMES ON DFIG SYSTEM DURING SMALL DISTURBANCE AND LOAD VARIATION
- LARGE DISTURBANCE
- APPLICATION OF SMES ON WECS DURING CONVERTER FAULTS
- Impact of SMES on DFIG Power Dispatch During Intermittent Misfire and Fire-Through Faults
- Misfire and Fire-Through
- Misfire on GSC and RSC
- Fire-Through on GSC and RSC
- SUMMARY
- REFERENCES
- Distribution Static Compensators and their Applications in Microgrids
- INTRODUCTION
- MICROGRID STRUCTURE AND CONTROL
- Control of DER Systems
- Control of BES Systems
- DSTATCOM STRUCTURE AND CONTROL
- VSC Structures
- Filter Structures
- Modulation in VSCs
- Current-Controlled DSTATCOM
- Voltage-Controlled DSTATCOM
- Other Control Aspects of DSTATCOMs
- APPLICATIONS OF DSTATCOM IN MICROGRIDS
- Load Compensation in a Microgrid
- Power Factor Correction in a Microgrid
- Voltage Regulation and Balancing in a Microgrid
- Combination of Power Quality Improvement and Energy Harvesting from a Renewable Source in Microgrid
- Interphase Power Circulation in a Microgrid with an Unbalanced Generation
- SUMMARY
- REFERENCES
- SUBJECT INDEX
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