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For the active vibration control, velocity feedback control method is used to design the controller.
Conventional controller for SBW system is designed by general feedback control method.
These results are then compared to the feedback control method utilizing H∞ strategy which allows us to design a robust controller requiring less sensors.
The controller is designed by the pole placement algorithm which provides a linear feedback control method.
The proportional feedback control method and the linear quadratic regulator (LQR) are used to design the controller.
The velocity feedback control method and a linear quadratic regulator (LQR) are used to design the controllers and actively suppress the vibration of the structural system.
Then, distributed static output feedback control method is also discussed.
The corresponding dynamic nonlinear output feedback control method is proposed.
A novel virtual feedback control method is presented.
Finally, the state feedback control method is applied to control chaotic motions effectively.
The feasibility and efficiency of delayed feedback control method are verified both theoretically and experimentally.
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