Nonlinear model predictive control for autonomous driving in terrain
Academic Press
2026
Knuutinen_etal_2026_BiosystEng_Nonlinear_model.pdf - Publisher's version - 4.31 MB
How to cite: Jere Knuutinen, Tabish Badar, Juha Backman, Arto Visala, Nonlinear model predictive control for autonomous driving in terrain, Biosystems Engineering, Volume 263, 2026, 104375, https://doi.org/10.1016/j.biosystemseng.2025.104375.
Pysyvä osoite
Tiivistelmä
Forestry machines used nowadays function in a wide variety of terrains. In order to make these vehicles operate autonomously advanced control methods are needed. However, current research related to autonomous driving generally assumes flat terrain in the control as well as in the estimation. Therefore concerning this matter, this paper addresses potential solutions by investigating and applying nonlinear model predictive control (NMPC) for autonomous driving in uneven terrain. This paper proposes a hybrid model derived from the dynamic six-degrees-of-freedom (6-DOF) model for motion control purposes. The developed NMPC method utilises a path tracking approach and aims to minimise the time-independent tracking error between the position of the vehicle and path by utilising the proposed hybrid model and three-dimensional (3D) terrain map. The effectiveness of the predictive controller is tested using three different test paths and terrains. An all-terrain electric vehicle (ATV) called Polaris is utilised to test and confirm the functionality of the control method. In addition, the paper proposes a rollover avoidance method and tests it in simulation environment. The method aims to lower the vehicle speed in the presence of high roll angles. The results from the actual tests with the implementation of the NMPC method indicate that accurate path-tracking results can be obtained with the proposed controller in the test paths used in this study with the tracking errors being 0.11 m, 0.07 m and 0.1 m.
ISBN
OKM-julkaisutyyppi
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
Julkaisusarja
Biosystems engineering
Volyymi
263
Numero
Sivut
Sivut
18 p.
ISSN
1537-5110
1537-5129
1537-5129
