Affiliation:
1. College of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255000, China
2. Liaocheng Academy of Agricultural Sciences, Liaocheng 252000, China
Abstract
Electric power steering (EPS) is widely used in tractor automatic driving because of its good operation stability. However, there is a lack of research about solving robust problems and response ability simultaneously when the tractor encounters emergency steering in harsh fields. The traditional robust controller has poor tracking performance and antidisturbance ability when encountering emergency steering. This paper proposes to add the corresponding mixed sensitivity operator to the corresponding performance index in the controller. By adjusting the amplitude of the mixed sensitivity operator, the tracking performance and the speed of disturbance attenuation can be both adjusted for the tractor EPS system. Simulation and hardware in the loop experiments verify the antidisturbance ability of the controller and the torque tracking performance. The results show that the control method has strong robustness and robust stability, which can meet the practical requirements. Also, the power steering characteristic of the H∞ controller with hybrid sensitivity design method is better than that of an unoptimized one, and its robustness is better, and under external pavement interference, the following ability is stronger for the ideal hand torque and the steering is more stable.
Funder
Shandong Province Agricultural Application Technology Innovation Project
Subject
Electrical and Electronic Engineering,General Computer Science,Signal Processing
Reference26 articles.
1. Control characteristics of EPS system of electric tractor;M. Xu;IAEJ,2019
2. A study on the handling stability of vehicles with EPS based on μ synthesis robust control;L. Chen;Automotive Engineering,2008
3. Sensor Reduction for Driver-Automation Shared Steering Control via an Adaptive Authority Allocation Strategy
4. Automotive EPS motor control strategy including special steering situations;S. Bei;Journal of System Simulation,2009
5. Displacement and force coupling control design for automotive active front steering system