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Application of flexible AC transmission system devices in wind energy conversion systems /

Bibliographic Details
Call Number:Libro Electrónico
Main Authors: Abu-Siada, Ahmed (Author), Masoum, M. S. (Author), Alharbi, Yasser (Author), Shahnia, Farhad (Author), Yunus, A. M. Shiddiq (Author)
Format: Electronic eBook
Language:Inglés
Published: Sharjah : Bentham Science Publishers, 2017.
Series:Recent advances in renewable energy ; v. 2.
Subjects:
Online Access:Texto completo
Table of Contents:
  • 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.