Technology development goals for automotive fuel cell power systems
Author : Directed Technologies, Inc
Publisher :
Page : 185 pages
File Size : 30,61 MB
Release : 1996-07-01
Category : Transportation
ISBN :
Author : Directed Technologies, Inc
Publisher :
Page : 185 pages
File Size : 30,61 MB
Release : 1996-07-01
Category : Transportation
ISBN :
Author :
Publisher :
Page : 734 pages
File Size : 11,84 MB
Release : 1994
Category : Engines
ISBN :
Author :
Publisher :
Page : 548 pages
File Size : 13,95 MB
Release : 1995
Category : Aeronautics
ISBN :
Author : European Commission. Directorate General for Research
Publisher :
Page : 38 pages
File Size : 41,72 MB
Release : 2003
Category : Fuel cells
ISBN :
Author :
Publisher : DIANE Publishing
Page : 451 pages
File Size : 37,12 MB
Release :
Category :
ISBN : 1428917594
Author :
Publisher : DIANE Publishing
Page : 177 pages
File Size : 27,69 MB
Release :
Category :
ISBN : 1428918477
Author : United States. Congress. Joint Economic Committee
Publisher :
Page : 348 pages
File Size : 24,18 MB
Release : 2006
Category : Business & Economics
ISBN :
Author :
Publisher :
Page : 456 pages
File Size : 18,89 MB
Release : 1995
Category : Aeronautics
ISBN :
Author : United States. Congress. Senate. Committee on Appropriations. Subcommittee on Energy and Water Development
Publisher :
Page : 500 pages
File Size : 26,15 MB
Release : 2009
Category : Energy development
ISBN :
Author : Sandeep Dhameja
Publisher : Elsevier
Page : 243 pages
File Size : 45,23 MB
Release : 2001-10-30
Category : Technology & Engineering
ISBN : 0080488765
Electric Vehicle Battery Systems provides operational theory and design guidance for engineers and technicians working to design and develop efficient electric vehicle (EV) power sources. As Zero Emission Vehicles become a requirement in more areas of the world, the technology required to design and maintain their complex battery systems is needed not only by the vehicle designers, but by those who will provide recharging and maintenance services, as well as utility infrastructure providers. Includes fuel cell and hybrid vehicle applications.Written with cost and efficiency foremost in mind, Electric Vehicle Battery Systems offers essential details on failure mode analysis of VRLA, NiMH battery systems, the fast-charging of electric vehicle battery systems based on Pb-acid, NiMH, Li-ion technologies, and much more. Key coverage includes issues that can affect electric vehicle performance, such as total battery capacity, battery charging and discharging, and battery temperature constraints. The author also explores electric vehicle performance, battery testing (15 core performance tests provided), lithium-ion batteries, fuel cells and hybrid vehicles. In order to make a practical electric vehicle, a thorough understanding of the operation of a set of batteries in a pack is necessary. Expertly written and researched, Electric Vehicle Battery Systems will prove invaluable to automotive engineers, electronics and integrated circuit design engineers, and anyone whose interests involve electric vehicles and battery systems.* Addresses cost and efficiency as key elements in the design process* Provides comprehensive coverage of the theory, operation, and configuration of complex battery systems, including Pb-acid, NiMH, and Li-ion technologies* Provides comprehensive coverage of the theory, operation, and configuration of complex battery systems, including Pb-acid, NiMH, and Li-ion technologies