Abstract:
In articulated vehicles steering is accomplished by adjusting the articulation angle. Commonly a steering actuator is used to pivot the two vehicle sections. This actuato...Show MoreMetadata
Abstract:
In articulated vehicles steering is accomplished by adjusting the articulation angle. Commonly a steering actuator is used to pivot the two vehicle sections. This actuator can be dispensed with if the pivoting is controlled by selective distribution of the drive torques to the individually driven wheels instead. Since steering is a safety-critical function, it must be ensured even if one of the drive motors fails. For this purpose, we propose a control method for a fault-tolerant four wheel independently driven articulated vehicle. The control method was developed and tested in a simulation environment and validated on a 1:5 scale demonstrator vehicle. The proposed method with constrained control allocation maintains the desired velocity and articulation angle by distributing the driving torques to the four wheels considering the current actuator limits. Both the simulation and the vehicle tests show that the control method meets the control objectives even when a sudden actuator limit occurs during critical driving scenarios like cornering. Thus, the vehicle can keep its maneuverability in the event of a detected failure of a drive motor. Together with reliable failure detection, the proposed approach provides a basis for further development towards innovative fault-tolerant electric articulated vehicles that meet the requirements of functional safety.
Published in: IEEE Open Journal of Intelligent Transportation Systems ( Volume: 4)
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Cites in Papers - |
Cites in Papers - IEEE (4)
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1.
Zhouyuan Qian, Tao Cao, Tao Hu, Hao Cheng, Bo Zheng, "Research on Adaptive Fault-Tolerant Control for Manned Lunar Rover", 2024 43rd Chinese Control Conference (CCC), pp.5112-5117, 2024.
2.
Baolu Li, Ping Liu, Lan Fu, Jinlong Li, Jianwu Fang, Zhigang Xu, Hongkai Yu, "VehicleGAN: Pair-flexible Pose Guided Image Synthesis for Vehicle Re-identification", 2024 IEEE Intelligent Vehicles Symposium (IV), pp.447-453, 2024.
3.
Raffaele Marotta, Salvatore Strano, Mario Terzo, Ciro Tordela, "On the Prediction of the Sideslip Angle Using Dynamic Neural Networks", IEEE Open Journal of Intelligent Transportation Systems, vol.5, pp.281-295, 2024.
4.
Hanyang Zhuang, Qiyue Shen, Yeqiang Qian, Wei Yuan, Chunxiang Wang, Ming Yang, "Fast Bidirectional Motion Planning for Self-Driving General N-Trailers Vehicle Maneuvering in Narrow Space", IEEE Open Journal of Intelligent Transportation Systems, vol.4, pp.989-999, 2023.