Abstract
This paper investigates a novel fault-tolerant control approach against active steering system failure based on differential drive assisted steering (DDAS) on four-wheel independently actuated (FWIA) electric ground vehicles. The front-wheel steering angle can be generated with the front-wheel differential driving torque when the steering motor fails. DDAS being the only steering power source is a potential alternative to replace the regular steering system in defective situation. On this issue, this paper deploys a hierarchical control method to utilize DDAS for automatic steering. The higher-level controller is dedicated to generate the desired control input including the yaw moments based on a robust LQR approach, and the lower-level controller is responsible for control allocation and giving out the respective desired tire forces and the desired steering angle. Simulation based on a high-fidelity and full-car model indicates that DDAS-based fault-tolerant control design for FWIA electric vehicle is effective to achieve equal handling and maneuverability performance in case of the steering failure.
| Original language | English |
|---|---|
| Pages (from-to) | 1180-1185 |
| Number of pages | 6 |
| Journal | IFAC-PapersOnLine |
| Volume | 28 |
| Issue number | 21 |
| DOIs | |
| State | Published - 1 Sep 2015 |
| Externally published | Yes |
| Event | 9th IFAC Symposium on Fault Detection, Supervision and Safety for Technical Processes, SAFEPROCESS 2015 - Paris, France Duration: 2 Sep 2015 → 4 Sep 2015 |
Keywords
- Differential drive assisted steering (DDAS)
- Electric ground vehicles
- Four-wheel independently actuated (FWIA)
- Hierarchical control
- Optimal control
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