Vehicle dynamics analysis becomes more demanding for off-road vehicles’ mobility in unconstructed environments. Significant vehicle orientation changes, extreme changes in ground elevation, and uneven ground profiles at tire-road contact regions, etc. must be taken into account. In addition, the simulation computations should strike a balance between the speed and the accuracy of the results. In this paper, a model with fourteen degrees of freedom is used for vehicle dynamics analysis. Integrated within the model, a comprehensive tire model and a system of instantaneous rotation matrices are programmed to address the effect of more extreme ground profiles on the vehicle dynamics. Additionally, an iterative algorithm is developed to explore and determine the tire-road contact point. The results of simulation for two random scenarios are validated versus a commercial vehicle dynamics software showing consistency of results.
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ASME 2018 Dynamic Systems and Control Conference
September 30–October 3, 2018
Atlanta, Georgia, USA
Conference Sponsors:
- Dynamic Systems and Control Division
ISBN:
978-0-7918-5189-0
PROCEEDINGS PAPER
A Comprehensive Framework for Simulating Dynamics of an Off-Road Vehicle in Unconstructed Environments
Shahab Karimi,
Shahab Karimi
Clemson University, Clemson, SC
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Ardalan Vahidi,
Ardalan Vahidi
Clemson University, Clemson, SC
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Paramsothy Jayakumar
Paramsothy Jayakumar
U.S. Army TARDEC, Warren, MI
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Shahab Karimi
Clemson University, Clemson, SC
Ardalan Vahidi
Clemson University, Clemson, SC
Paramsothy Jayakumar
U.S. Army TARDEC, Warren, MI
Paper No:
DSCC2018-9189, V001T10A006; 10 pages
Published Online:
November 12, 2018
Citation
Karimi, S, Vahidi, A, & Jayakumar, P. "A Comprehensive Framework for Simulating Dynamics of an Off-Road Vehicle in Unconstructed Environments." Proceedings of the ASME 2018 Dynamic Systems and Control Conference. Volume 1: Advances in Control Design Methods; Advances in Nonlinear Control; Advances in Robotics; Assistive and Rehabilitation Robotics; Automotive Dynamics and Emerging Powertrain Technologies; Automotive Systems; Bio Engineering Applications; Bio-Mechatronics and Physical Human Robot Interaction; Biomedical and Neural Systems; Biomedical and Neural Systems Modeling, Diagnostics, and Healthcare. Atlanta, Georgia, USA. September 30–October 3, 2018. V001T10A006. ASME. https://doi.org/10.1115/DSCC2018-9189
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