Optimized Rear-Axle Concept for Battery Electric Vehicles
Other conference contribution, 2022
large battery sizes. Moreover, advanced active systems such as air springs and active rear wheel steering with large steering angles were also considered. The concept also proposes a packaging solution with a well-tuned kinematic performance which meets the OEMs tuning philosophy.
In order to address the resulting high complexity, newly developed methods were used. The kinematic optimization was done with an innovative method, which automatically proposes new hard points, depending on the given requirements. For the design, simplified models were used to represent the shape of sophisticated parts. So, it was possible to automatically judge whether a kinematic concept is feasible from a packaging point of view. The results show that the new suspension concept can handle the challenge packaging issues and complex kinematic requirements.
Development process
Kinematics
Battery Electric Vehicles (BEV)
Packaging
Automated methods
Author
Yansong Huang
Chalmers, Mechanics and Maritime Sciences (M2), Vehicle Engineering and Autonomous Systems
Johannes Köpler
FKFS Forschungsinstitut für Kraftfahrwesen und Fahrzeugmotoren Stuttgart
Shanghai, China,
AI supported road vehicle suspension design
VINNOVA (dnr2020-02917), 2021-01-01 -- 2022-01-22.
Subject Categories
Other Mechanical Engineering
Vehicle Engineering
Areas of Advance
Transport