Litcius/Paper detail

Real-time lateral stability and steering characteristic control using non-linear model predictive control

Wian Botes, Theunis R. Botha, P. Schalk

2022Vehicle System Dynamics22 citationsDOI

Abstract

This paper presents a non-linear integrated control strategy that primarily focuses maintaining vehicle lateral stability using active front steering and differential braking. The proposed control strategy utilises a non-linear model predictive controller to improve lateral stability. A stable linear reference model is used for reference generation. By including the understeer gradient in the reference model, different kinematic responses are obtained from the controlled vehicle. The prediction model utilises the road friction estimate to create dynamic stability constraints that include rollover and sliding of the vehicle. The design of the model predictive controller allows easy activation of different control actuators and dynamic modification to the control behaviour. The control methodology is validated using MATLAB/Simulink and a validated MSC ADAMS model. A sensitivity analysis is conducted to identify the susceptibility of the control strategy to various parameters and states.

Topics & Concepts

Control theory (sociology)Model predictive controlRollover (web design)KinematicsAutomobile handlingStability (learning theory)Controller (irrigation)EngineeringMATLABControl engineeringLinear modelElectronic stability controlVehicle dynamicsSensitivity (control systems)Active steeringActuatorPID controllerComputer scienceControl (management)Automotive engineeringTemperature controlArtificial intelligenceWorld Wide WebOperating systemPhysicsElectrical engineeringClassical mechanicsAgronomyMachine learningBiologyElectronic engineeringVehicle Dynamics and Control SystemsSoil Mechanics and Vehicle DynamicsHydraulic and Pneumatic Systems