Economic Dispatch and Generation Scheduling in Operation of Modern Power Systems : Optimization Techniques and Real-World Applications

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Economic Dispatch and Generation Scheduling in Operation of Modern Power Systems : Optimization Techniques and Real-World Applications

  • 言語:ENG
  • ISBN:9780443442810
  • eISBN:9780443442827

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Description

Economic Dispatch and Generation Scheduling in Operation of Modern Power Systems: Optimization Techniques and Real-World Applications is a comprehensive resource, bridging the gap between traditional power generation methodologies and advanced optimization techniques. Chapters review foundational principles of economic dispatch and generation scheduling, then demonstrate mathematical models, optimization techniques, and the impact of renewable energy integration. The role of cutting-edge methods such as Artificial Intelligence and machine learning in dispatch, energy storage systems and electric vehicles, and advancements in smart grid technologies are also examined.The book examines the rapid evolution of power systems, emphasizing the need for innovative approaches to address the complexities of energy supply and demand.Case studies and real-world applications are included to provide readers with insights into practical implementations and contemporary challenges in the field. This is a valuable resource for professionals, students, and researchers in energy, enhancing understanding of how to optimize energy, reduce operational costs, and improve reliability in an evolving landscape.- Presents solutions for optimizing the dispatch of distributed energy resources (DERs) using machine learning, artificial intelligence, and real-time control systems- Explains complicated mathematical models and optimization approaches and algorithms for enhanced forecasting, scheduling, and dispatch that account for variations in renewable energy supply- Demonstrates the use of optimization techniques through case studies, simulations, and practical applications

Table of Contents

1. Introduction to Economic Dispatch, Security-Constrained Economic Dispatch, and Generation Scheduling2. Mathematical Formulation of Economic Dispatch and Generation Scheduling3. Optimization Techniques for Economic Dispatch, SCED, and Generation Scheduling4. Economic Dispatch and SCED with Renewable Energy Integration5. Energy Storage Systems in Economic Dispatch and SCED6. Electric Vehicles in Economic Dispatch and Power System Optimization7. Smart Grids, Distributed Energy Resources, and Microgrids in Economic Dispatch8. Case Studies and Real-World Applications of Economic Dispatch, SCED, and Generation Scheduling9. Challenges in Economic Dispatch, SCED, and Generation Scheduling in Modern Power Systems10. Future Trends in Economic Dispatch, SCED, and Power System Optimization

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