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Power System Flexibility

Autor Zongxiang Lu, Haibo Li, Ying Qiao, Xie Le, Chanan Singh
en Limba Engleză Paperback – 14 sep 2023
Power System Flexibility provides a consolidated foundation in the design, planning, and operation of intermittent highly renewable power systems—integrating core theory, mathematical analysis, and modern international applications in an unusually multidisciplinary approach. Opening with an expansive theoretical grounding in the definition, analysis, and modeling of power systems, the book demonstrates how to apply flexibility theory to critical problems involving intermittency and variability in power system planning and operation. The guide concludes with an international complement of case studies, demonstrating how flexibility theory has been applied to real-world projects of increasing complexity.

  • Integrates underlying scientific foundations with modern methods in the planning and operation of flexible power systems
  • Demonstrates how to design, plan, operationalize, and optimize flexible solutions across the full range of power generation, electrical grids, energy demand, and energy storage applications
  • Includes an international complement of real-world case studies focusing on delivering flexibility in highly renewable electricity systems
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Specificații

ISBN-13: 9780323995177
ISBN-10: 0323995179
Pagini: 382
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE

Public țintă

Graduate students and early career researchers (1st year PhD+) working in power engineering, energy systems, control engineering, and renewable energy.
Engineers, power plant staff, transmission system operators, network owners, manufacturers, consultants, and relevant workers in power system operations, electrical engineering and relevant fields. Power system economists.

Cuprins

Part 1: Concepts and Mathematics about Flexibility
1. Introduction to power system flexibility
2. Mathematical basis for flexibility modeling
3. Concepts and characteristics of power system flexibility
4. Flexibility Balancing Principle and Indices
5. Flexibility Assessment based on operational simulation
6. Flexibility Assessment Tool and Case Studies
Part 2: Incorporating Flexibility into Power System Analysis
7. Active Power Balance Control based on Flexibility Theory
8. Reactive Power Balance Control based on Flexibility Theory
9. Modeling Flexibility in Electric Power Market
Part 3: The optimal planning of power system flexibility resources
10. Introduction to power system flexibility planning
11. Coordinating planning of generation-grid-load-storage flexibility resources
12. Integrated planning of collection and delivery system for large scale new energy base
13. Collection and transmission flexibility planning for large offshore wind power base
14. Deployment and allocation of storage based on flexibility theory
Part 4: The optimal operation of power system flexibility resources
15. Introduction to power system flexibility operation
16. Virtual power generator based hierarchical schedule of wind power cluster
17. Multi-sources complementary operation considering grid constraints
18. Multi-temporal-spatial-scale flexibility to improve renewable accommodation
19. Flexible resource coordination on demand side
Part 5: Planning applications of flexibility theory
20. Planning projects of power system flexibility
21. Operation application of flexibility theory
22. The sector coupled flexibility resources