The Proceedings of the 5th International Conference on Energy Storage and Intelligent Vehicles (ICEIV 2022) (inbunden)
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Format
Häftad (Paperback / softback)
Språk
Engelska
Antal sidor
1326
Utgivningsdatum
2024-05-12
Upplaga
2023
Förlag
Springer Verlag, Singapore
Medarbetare
Sun, Fengchun (ed.), Xiong, Rui (ed.), Dahlquist, Erik (ed.), Yang, Qingxin (ed.)
Illustrationer
708 Illustrations, color; 153 Illustrations, black and white; XVII, 1326 p. 861 illus., 708 illus. i
Dimensioner
73 x 235 x 155 mm
Vikt
2032 g
Antal komponenter
2
Komponenter
2 paperbacks
ISBN
9789819910298

The Proceedings of the 5th International Conference on Energy Storage and Intelligent Vehicles (ICEIV 2022)

Häftad,  Engelska, 2024-05-12
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This book includes original, peer-reviewed research papers from the 5th International Conference on Energy Storage and Intelligent Vehicles (ICEIV 2022), held online, from December 3 to December 4, 2022. The topics covered include but are not limited to energy storage, power and energy systems, electrified/intelligent transportation, batteries and management, and power electronics. The papers share the latest findings in energy storage and intelligent vehicles, making the book a valuable asset for researchers, engineers, university students, etc.
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Innehållsförteckning

Capacity fading characteristics of lithium iron phosphate batteries under different precooling conditions.- Research on detection method of metal foreign objects in electric vehicle wireless power transfer system.- An Adaptive Equivalent Heat Minimization Strategy for Hybrid Electric Trucks Braking Considering Brake Temperature Rise in Long Downhills.- Field-oriented control strategy verification based on power hardware in loop simulation technology.- Hybrid estimation of residual capacity for retired LFP batteries.- Design of a full-time security protection system for energy storage stations based on digital twin technology.- Online Electrical Fault Diagnosis and Low-Cost State Estimation for Lithium-Ion Battery Pack Based Electric Drive System.- Capacity prediction of lithium-ion battery based on HGWO-SVR.- Life Cycle Carbon Footprint Assessment of Power Transmission Equipment.- Performance optimization of Tesla valve microchannel cold plates for Li-ion battery.