Title :
Design and Vehicle Implementation of Preview Active Suspension Controllers
Author :
Gohrle, Christoph ; Schindler, Andreas ; Wagner, Andreas ; Sawodny, Oliver
Author_Institution :
Inst. for Syst. Dynamics, Univ. of Stuttgart, Stuttgart, Germany
Abstract :
Active suspensions influencing the vertical dynamics of vehicles enable the improvement of ride comfort and handling characteristics compared to vehicles with passive suspensions. If the road height profile in front of the car is measured using vehicle sensors, more efficient control strategies can be applied. In this brief, two model predictive approaches for preview active suspension controllers are proposed and compared to the well-known optimal preview control approach. The considered active suspension consists of low bandwidth actuators in series with the spring and passive dampers. Equations of a linear full-car model are derived. The first model predictive controller optimizes the actuator displacements on a nonequidistant grid over the preview horizon. The second controller optimizes trajectories for heave, pitch, and roll of the vehicle body over the preview horizon using a quadratic program. Therefore, a model inversion is presented. The trajectories are formulated as a summation of nonequidistant B-spline basis functions and constraints on the input are incorporated in trajectory generation via the inverse vehicle model. Simulation results are presented and vehicle implementation using recorded road height data is conducted.
Keywords :
actuators; control system synthesis; inverse problems; predictive control; quadratic programming; road vehicles; shock absorbers; splines (mathematics); springs (mechanical); vehicle dynamics; vibration control; actuator displacement optimization; control strategy; handling characteristics; inverse vehicle model; linear full-car model; low bandwidth actuators; model inversion; model predictive controller; nonequidistant B-spline basis functions; nonequidistant grid; optimal preview control approach; passive damper; preview active suspension controller design; preview horizon; quadratic program; ride comfort improvement; road height profile; spring; trajectory generation; trajectory optimization; vehicle body heave; vehicle body pitch; vehicle body roll; vehicle implementation; vehicle sensors; vehicle vertical dynamics; Actuators; Mathematical model; Roads; Suspensions; Trajectory; Vehicles; Wheels; Active vehicle suspension; model predictive control (MPC); road preview; trajectory generation; vehicle dynamics; vehicle dynamics.;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2013.2272342