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Hosting Capacity Aspects in Distribution Networks Towards Sustainable Energy Systems

Editat de Hossam Mousa, Karar Mahmoud, Matti Lehtonen
en Limba Engleză Paperback – mai 2025
Hosting Capacity Aspects in Distribution Networks Towards Sustainable Energy Systems is a holistic guidebook to this critical aspect of power systems, and the essential developments required to support the transition to sustainable energy sources.
This book begins by establishing fundamental principles of hosting capacity in energy systems. It highlights modern challenges in transitioning to renewable and distributed energy sources, and the key role hosting capacity plays in the planning and operation of a successful system. Later chapters go into detail on a variety of practical hosting capacity calculation methods, and enhancement techniques, alongside available tools and software solutions to hosting capacity problems.
Collecting the very latest in this essential, under-collated area, Hosting Capacity Aspects in Distribution Networks Towards Sustainable Energy Systems supports students, researchers, and engineers in planning hosting capacity aspects for successful renewable and sustainable energy systems.


  • Outlines the fundamental concepts of hosting capacity and its relation to sustainable energy systems
  • Provides a range of accurate, flexible options of tools, software, calculations, and enhancement techniques
  • Supports readers in mastering the latest theoretical and practical developments
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Specificații

ISBN-13: 9780443339127
ISBN-10: 0443339120
Pagini: 300
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE

Cuprins

1. Introduction to Energy Conversion Systems
2. Impacts of Distributed Energy Resources, Energy Storage Systems, and Hydrogen on Modern Power Systems
3. State of the Art Hosting Capacity Concepts
4. Operational Performance Limits
5. Hosting Capacity Calculation Methods
6. Tools, Software, and Test Systems for Hosting Capacity Assessments
7. Hosting Capacity Enhancement Strategies
8. Developments Toward Sustainable Energy System Operation
9. Discussion and Conclusion