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Advanced Frequency Regulation Strategies in Renewable-Dominated Modern Power Systems discusses advanced control strategies positioned to attain stable and reliable electric power operation in highly renewable modern grids. These strategies are increasingly valuable components of the practitioner technical toolbox, and are essential to maintain frequency and voltage regulations, assert power quality standards, and ensure overall grid stability. This book focuses on the rapid integration of renewable-based generating units in power systems, highlighting state-of-the-art technologies and emerging topics pertaining to load frequency control, robust control strategies, and energy storage systems. Chapters are accompanied by case studies drawn from modern international practice.- Disseminates novel control strategies for the reliable and robust control of renewable generating units
- Discusses implementation using case studies that address multiple frequency control applications across integrated modern power systems
- Accompanied by simulation models in MATLAB that are built to emphasize practical usage and address real-world problems
Part I: INTRODUCTION TO FREQUENCY REGULATION STRATEGIES1. Overview of the renewable-dominated modern power systems and their frequency regulation issues2. Bird's-eye view of frequency regulation in modern power system: Recent advances, research trends and challenges3. Various frequency regulation schemes and applications: a comprehensive reviewPart II: FREQUENCY REGULATION IN RESTRUCTURED ELECTRICITY MARKET4. Frequency regulation strategies in the present deregulated electricity market5. Price-based frequency regulation strategies in restructured electricity market6. Frequency regulation incorporating advanced FACTS devices in restructured electricity marketPart III: FREQUENCY REGULATION IN THE PRESENCE OF RENEWABLE ENERGY SOURCES7. Various methods/strategies to improve the frequency control in a grid with high penetration of renewables: review and new perspectives8. Impact of wind turbine's kinetic energy support for frequency regulation in the grid9. Role of virtual power plant and virtual inertia applications in grid frequency controlPart IV: FREQUENCY REGULATION USING ARTIFICIAL INTELLIGENCE TECHNIQUES 10. Artificial intelligence applications for robust frequency control11. Deep reinforcement learning approaches for fast frequency control in low-inertia power systems12. Role of cyber-security control schemes for frequency regulation in modern power systemPart V: OTHER TOPICS RELATED TO FREQUENCY REGULATION13. Role of energy storage technologies in frequency regulation in modern power systems14. Electric vehicles and their impacts on modern power system operation and control in terms of frequency stability15. Frequency regulation through voltage regulation of the power system16. Demand-side management (DSM) and demand response techniques: Role towards frequency management in the power system17. Frequency regulation strategies: Innovations, trends, key issues, challenges, and future scope