Battery System Modeling
  1. 354 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

About this book

Battery System Modeling provides advances on the modeling of lithium-ion batteries. Offering step-by-step explanations, the book systematically guides the reader through the modeling of state of charge estimation, energy prediction, power evaluation, health estimation, and active control strategies. Using applications alongside practical case studies, each chapter shows the reader how to use the modeling tools provided. Moreover, the chemistry and characteristics are described in detail, with algorithms provided in every chapter. Providing a technical reference on the design and application of Li-ion battery management systems, this book is an ideal reference for researchers involved in batteries and energy storage. Moreover, the step-by-step guidance and comprehensive introduction to the topic makes it accessible to audiences of all levels, from experienced engineers to graduates. - Explains how to model battery systems, including equivalent, electrical circuit and electrochemical nernst modeling - Includes comprehensive coverage of battery state estimation methods, including state of charge estimation, energy prediction, power evaluation and health estimation - Provides a dedicated chapter on active control strategies

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Yes, you can access Battery System Modeling by Shunli Wang,Carlos Fernandez,Yu Chunmei,Yongcun Fan,Cao Wen,Daniel-Ioan Stroe,Zonghai Chen in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Energy. We have over one million books available in our catalogue for you to explore.

Information

Publisher
Elsevier
Year
2021
Print ISBN
9780323904728

Table of contents

  1. Cover
  2. Front Matter
  3. Table of Contents
  4. Copyright
  5. List of Illustrations
  6. List of Tables
  7. Chapter 1 : Lithium-ion battery characteristics and applications
  8. Chapter 2 : Electrical equivalent circuit modeling
  9. Chapter 3 : Electrochemical Nernst modeling
  10. Chapter 4 : Battery state estimation methods
  11. Chapter 5 : Battery state-of-charge estimation methods
  12. Chapter 6 : Battery state-of-energy prediction methods
  13. Chapter 7 : Battery state-of-power evaluation methods
  14. Chapter 8 : Battery state-of-health estimation methods
  15. Chapter 9 : Battery system active control strategies
  16. Index
  17. A