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Power System Flexibility

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Paperback, blz. | Engels
Elsevier Science | 2023
ISBN13: 9780323995177
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Elsevier Science e druk, 2023 9780323995177
€ 173,80
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Samenvatting

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.

Specificaties

ISBN13:9780323995177
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

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