Please note: In order to keep Hive up to date and provide users with the best features, we are no longer able to fully support Internet Explorer. The site is still available to you, however some sections of the site may appear broken. We would encourage you to move to a more modern browser like Firefox, Edge or Chrome in order to experience the site fully.

Battery Management Systems, Volume I : Battery Modeling, PDF eBook

Battery Management Systems, Volume I : Battery Modeling PDF

PDF

Please note: eBooks can only be purchased with a UK issued credit card and all our eBooks (ePub and PDF) are DRM protected.

Description

Large-scale battery packs are needed in hybrid and electric vehicles, utilities grid backup and storage, and frequency-regulation applications.

In order to maximize battery-pack safety, longevity, and performance, it is important to understand how battery cells work.

This first of its kind new resource focuses on developing a mathematical understanding of how electrochemical (battery) cells work, both internally and externally.

This comprehensive resource derives physics-based micro-scale model equations, then continuum-scale model equations, and finally reduced-order model equations.

This book describes the commonly used equivalent-circuit type battery model and develops equations for superior physics-based models of lithium-ion cells at different length scales.This resource also presents a breakthrough technology called the "e;discrete-time realization algorithm"e; that automatically converts physics-based models into high-fidelity approximate reduced-order models.

Information

Information