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Transient Effects in Simulations of Hybrid Electric Drivetrains
Details
This work presents an investigation of the influence of different modeling approaches on the quality of fuel economy simulations of hybrid electric powertrains. The main focus is on the challenge to accurately include transient effects and reduce the computation time of complex models. Methods for the composition of entire powertrain models are analyzed as well as the modeling of the individual components internal combustion engine and battery. The results shall help with the selection of suitable models for specific simulation tasks and provide a deeper understanding of the dynamic processes within simulations of hybrid electric vehicles.
About the Author
Florian Winke was research associate at the Research Institute of Automotive Engineering and Vehicle Engines Stuttgart (FKFS), where he worked on modeling and simulation of hybrid electric powertrains. After finishing his doctorate, he joined a German automotive manufacturer, where he is working in software development in the field of hybrid operation strategies.
Deeper understanding of dynamic processes within simulations
Autorentext
Florian Winke was research associate at the Research Institute of Automotive Engineering and Vehicle Engines Stuttgart (FKFS), where he worked on modeling and simulation of hybrid electric powertrains. After finishing his doctorate, he joined a German automotive manufacturer, where he is working in software development in the field of hybrid operation strategies.
Inhalt
Powertrain Modeling.- Internal Combustion Engine Modeling.- Battery Modeling.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783658225537
- Auflage 18001 A. 1st edition 2019
- Sprache Englisch
- Genre Maschinenbau
- Lesemotiv Verstehen
- Anzahl Seiten 148
- Größe H210mm x B148mm x T9mm
- Jahr 2018
- EAN 9783658225537
- Format Kartonierter Einband
- ISBN 365822553X
- Veröffentlichung 05.06.2018
- Titel Transient Effects in Simulations of Hybrid Electric Drivetrains
- Autor Florian Winke
- Untertitel Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart
- Gewicht 202g
- Herausgeber Springer VS