Claude Bouvy
Forschungsgesellschaft Kraftfahrwesen mbH, Aachen, Germany
Sidney Baltzer
Institut für Kraftfahrzeuge – RWTH Aachen University, Aachen, Germany
Peter Jeck
Institut für Kraftfahrzeuge – RWTH Aachen University, Aachen, Germany
Jörg Gißing
Institut für Kraftfahrzeuge – RWTH Aachen University, Aachen, Germany
Thomas Lichius
Institut für Kraftfahrzeuge – RWTH Aachen University, Aachen, Germany
Lutz Eckstein
Institut für Kraftfahrzeuge – RWTH Aachen University, Aachen, Germany
Ladda ner artikelhttp://dx.doi.org/10.3384/ecp12076263Ingår i: Proceedings of the 9th International MODELICA Conference; September 3-5; 2012; Munich; Germany
Linköping Electronic Conference Proceedings 76:26, s. 264-270
Publicerad: 2012-11-19
ISBN: 978-91-7519-826-2
ISSN: 1650-3686 (tryckt), 1650-3740 (online)
The increasing electrification of the drive train in the automotive environment leads to higher requirements for automotive systems and their design. Therefore; a computer based methodology to support the engineer in the design phase of car concepts; components and control algorithms is desirable. All relevant sections of a vehicle development process; e.g. longitudinal and lateral dynamics; thermal management or the power supply should be considered. Due to this necessity a new holistic vehicle library is developed at the Forschungsgesellschaft Kraftfahrwesen mbH Aachen(fka) and Institute of Automotive Engineering (ika) of RWTH Aachen University. The introduced holistic method is applied exemplarily on architecture with the traction battery as thermal storage to determine the potential of such a design on the overall efficiency and to analyse different operational strategies.
vehicle simulation; thermal management; control strategy; traction battery; thermal storage; electric vehicle; range extender
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