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The need for passenger comfort, road handling abilities of tires, and vehicle handling characteristics, have been the major challenge in the design of suspension system over the years. These electronically controlled suspension systems can potentially improve the ride comfort as well as the road handling of the vehicle. Two different performance indices for optimal controller design are proposed.
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Automobile passenger comfort assured through lqg/lqr active suspension Demands for better ride comfort and controllability of road vehicles has motivated many automotive industries to consider the use of active suspensions Lqg and flqg control methods were designed and used for active control to increase vehicle handling and passenger comfort
The study aims to reduce or eliminate unwanted vibrations by performing active control of passive suspension systems using the recommended methods.
We establishes the dynamic model of the vehicle, and use the linear quadratic optimal control theory to design the lqg controller of the active suspension, and use matlab/simulink to simulate the vehicle dynamic model. This study considers the passenger comfort problem in modern sedan vehicles and presents a novel lqr framework that treats the induced vibration attenuation of the chassis frame, under the assumption of uncertain vehicle dynamics. This study applied the lqr controller to enhance the active suspension system in passenger vehicles, aiming to improve vertical vibration performance