Welcome to P K Kelkar Library, Online Public Access Catalogue (OPAC)

Battery management systems [3 vols.]

By: Contributor(s): Publication details: Artech House 2015, 2016, 2024 NorwoodDescription: 3v. [various pagings]ISBN:
  • 9781630810238, 9781630810276, 9781630819040
Subject(s): DDC classification:
  • 621.35 P716b
Contents:
v.1. Battery modeling, xi, 327p, 9781630810238, 2015; v.2. Equivalent-circuit methods, x, 316p, 9781630810276, 2016; v.3. Physics-based methods, xiv, 380p, 9781630819040, 2024
Summary: This comprehensive resource derives physics-based microscale 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 book presents a breakthrough technology called the discrete-time realization algorithm that automatically converts physics-based models into high-fidelity approximate reduced-order models. These reduced-order models have similar computational complexity to equivalent-circuit-type models, but can also predict electrochemical variables at any spatial location inside the cell.
List(s) this item appears in: New Arrival August 25 to 31, 2025
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
Books Books PK Kelkar Library, IIT Kanpur On Display 621.35 P716b v.1 (Browse shelf(Opens below)) Available A186962
Books Books PK Kelkar Library, IIT Kanpur On Display 621.35 P716b v.2 (Browse shelf(Opens below)) Available A186963
Books Books PK Kelkar Library, IIT Kanpur On Display 621.35 P716b v.3 (Browse shelf(Opens below)) Available A186964
Total holds: 0

v.1. Battery modeling, xi, 327p, 9781630810238, 2015; v.2. Equivalent-circuit methods, x, 316p, 9781630810276, 2016; v.3. Physics-based methods, xiv, 380p, 9781630819040, 2024

This comprehensive resource derives physics-based microscale 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 book presents a breakthrough technology called the discrete-time realization algorithm that automatically converts physics-based models into high-fidelity approximate reduced-order models. These reduced-order models have similar computational complexity to equivalent-circuit-type models, but can also predict electrochemical variables at any spatial location inside the cell.

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