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Electrochemical Power Sources: Fundamentals, Systems, and Applications: Simulation Models of Secondary Batteries: From Quantum Physics to Techno-economic Scale

Editat de Julia Kowal, Dirk Uwe Sauer
en Limba Engleză Paperback – noi 2025
Electrochemical Power Sources: Fundamentals, Systems, and Applications: Simulation Models of Secondary Batteries: From Quantum Physics to Techno-economic Scale gives an overview of the different modeling approaches for battery simulation models used for different purposes, such as battery pack design or state of charge estimation. Solutions for different applications are presented, and a classification into electrical, thermal, aging models is given, along with degree of precision ranging from physico-chemical, over impedance based to energy flow or empirical models with their specific advantages and disadvantages.

In applications such as a vehicle energy management, it is important to know the state of the battery, e.g., what is the remaining driving range or when should the battery be replaced.

  • Overviews many different battery modeling approaches
  • Outlines how to choose the best model for a given purpose
  • Offers a complete range from particle to system model
  • Includes electrical, thermal, and aging models
  • Discusses limitations of modeling approaches
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Specificații

ISBN-13: 9780128199879
ISBN-10: 0128199873
Pagini: 312
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE

Public țintă

Engineers working on the electrical and thermal design of battery systems including battery management systems
electrical and mechanical engineers
material scientists, chemists, engineers
Researchers working on the improvement of cells, lifetime prediction etc.

Cuprins

1. Quantum physics models
2. Physico chemical models
3. Impedance based models
4. Thermal models
5. Ageing models
6. Techno economic models
7. Lithium-Ion battery models
8. Lithium-sulfur battery models
9. Lead-acid battery models
10. Supercap models
11. Metal-air battery models
12. Redox Flow battery models
13. High temperature battey models