A Novel Path-Tracking Algorithm for Automated Tractor-Trailer Forward and Backward Maneuvers
Organizations: UTBM, CIAD, F-90010 Belfort cedex, France
Abstract
Fully autonomous tractor--trailer systems are increasingly deployed in logistics, agriculture, and industrial environments, where precise and robust path-tracking capabilities are essential. However, the articulation between the tractor and the trailer introduces additional nonlinearities and significantly complicates lateral and longitudinal control, particularly during reversing maneuvers. This paper introduces a novel path-tracking algorithm specifically designed for articulated vehicles with a single trailer. The proposed method combines a lateral control law applied at the trailer level with a short-horizon predictive adjustment of the tractor steering angle, ensuring stable convergence toward the desired path in both forward and backward motion. The approach is geometry-based and requires no per-vehicle calibration or training. Simulation studies in a high-fidelity physics simulator demonstrate the ability of the controller to match or outperform classical and state-of-the-art methods in terms of accuracy, stability, and robustness to disturbances.
Figures & tables
| Parameter | Value |
|---|---|
| Tractor wheelbase | 2.93 m |
| Trailer wheelbase | 6.30 m |
| Hitch offset ( in Fig. 1 ) | 0.14 m |
| Steering angle rate limit | 40°/s |