Publication | Open Access
Design of LQG Controller for Active Suspension without Considering Road Input Signals
39
Citations
23
References
2017
Year
Automotive EngineeringEngineeringVehicle ControlVehicle DynamicSuspension StructureGenetic AlgorithmSystems EngineeringNonlinear Vibration ControlLqg ControllerModeling And SimulationSuspension SystemMechatronicsActive SuspensionActive Vibration ControlSuspension ControllerAerospace EngineeringMechanical SystemsVibration ControlRoad Traffic Control
As the road conditions are completely unknown in the design of a suspension controller, an improved linear quadratic and Gaussian distributed (LQG) controller is proposed for active suspension system without considering road input signals. The main purpose is to optimize the vehicle body acceleration, pitching angular acceleration, displacement of suspension system, and tire dynamic deflection comprehensively. Meanwhile, it will extend the applicability of the LQG controller. Firstly, the half-vehicle and road input mathematical models of an active suspension system are established, with the weight coefficients of each evaluating indicator optimized by using genetic algorithm (GA). Then, a simulation model is built in Matlab/Simulink environment. Finally, a comparison of simulation is conducted to illustrate that the proposed LQG controller can obtain the better comprehensive performance of vehicle suspension system and improve riding comfort and handling safety compared to the conventional one.
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