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Advances in Battery Technologies for Electric Vehicles

✍ Scribed by Bruno Scrosati, Jürgen Garche, Werner Tillmetz


Publisher
Woodhead Publishing
Year
2015
Tongue
English
Leaves
524
Series
Woodhead Publishing Series in Energy
Edition
1
Category
Library

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✦ Synopsis


Advances in Battery Technologies for Electric Vehicles provides an in-depth look into the research being conducted on the development of more efficient batteries capable of long distance travel.

The text contains an introductory section on the market for battery and hybrid electric vehicles, then thoroughly presents the latest on lithium-ion battery technology.

Readers will find sections on battery pack design and management, a discussion of the infrastructure required for the creation of a battery powered transport network, and coverage of the issues involved with end-of-life management for these types of batteries.

  • Provides an in-depth look into new research on the development of more efficient, long distance travel batteries
  • Contains an introductory section on the market for battery and hybrid electric vehicles
  • Discusses battery pack design and management and the issues involved with end-of-life management for these types of batteries

✦ Table of Contents


Content:
Front Matter, Pages i-iii
Copyright, Page iv
List of contributors, Pages xi-xiii, C. Arbizzani, E. Cabrera Castillo, M.A. Danzer, F. De Giorgio, M. Fetcenko, J. Garche, T. Goldbach, D. Grazioli, A. Hauser, H. Helms, F. Herrmann, C. Huber, C. Kämper, E. Karden, H. Kim, M.C. Kintner-Meyer, J. Koch, R. Kuhn, P. Kurzweil, U. Lambrecht, V. Liebau, et al.
Woodhead Publishing Series in Energy, Pages xv-xix
1 - Introduction to hybrid electric vehicles, battery electric vehicles, and off-road electric vehicles, Pages 3-16, F. Herrmann, F. Rothfuss
2 - Carbon dioxide and consumption reduction through electric vehicles, Pages 17-34, H. Helms, C. Kämper, U. Lambrecht
3 - The market for battery electric vehicles, Pages 35-54, B. Schott, A. Püttner, M. Müller
4 - Battery parameters for hybrid electric vehicles, Pages 55-72, C. Arbizzani, F. De Giorgio, M. Mastragostino
5 - Lead–acid batteries for hybrid electric vehicles and battery electric vehicles, Pages 75-101, J. Garche, P.T. Moseley, E. Karden
6 - Nickel–metal hydride and nickel–zinc batteries for hybrid electric vehicles and battery electric vehicles, Pages 103-126, M. Fetcenko, J. Koch, M. Zelinsky
7 - Post-lithium-ion battery chemistries for hybrid electric vehicles and battery electric vehicles, Pages 127-172, P. Kurzweil
8 - Lithium-ion batteries for hybrid electric vehicles and battery electric vehicles, Pages 173-190, A. Perner, J. Vetter
9 - High-performance electrode materials for lithium-ion batteries for electric vehicles, Pages 191-241, H. Kim, S.-M. Oh, B. Scrosati, Y.-K. Sun
10 - Design of high-voltage battery packs for electric vehicles, Pages 245-263, C. Linse, R. Kuhn
11 - High-voltage battery management systems (BMS) for electric vehicles, Pages 265-282, A. Hauser, R. Kuhn
12 - Cell balancing, battery state estimation, and safety aspects of battery management systems for electric vehicles, Pages 283-326, A. Hauser, R. Kuhn
13 - Thermal management of batteries for electric vehicles, Pages 327-358, C. Huber, R. Kuhn
14 - Aging of lithium-ion batteries for electric vehicles, Pages 359-387, M.A. Danzer, V. Liebau, F. Maglia
15 - Repurposing of batteries from electric vehicles, Pages 389-415, V.V. Viswanathan, M.C. Kintner-Meyer
16 - Computer simulation for battery design and lifetime prediction, Pages 417-442, A. Salvadori, D. Grazioli
17 - Electric road vehicle battery charging systems and infrastructure, Pages 445-467, B. Lunz, D.U. Sauer
18 - Standards for electric vehicle batteries and associated testing procedures, Pages 469-494, E. Cabrera Castillo
19 - Licensing regulations for electric vehicles: legal requirements regarding rechargeable energy storage systems, Pages 495-502, T. Goldbach
20 - Recycling lithium batteries, Pages 503-516, B. Scrosati, J. Garche, Y.-K. Sun
Index, Pages 517-526


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