2003The Proceedings of the Symposium on the Motion and Vibration ControlOpen access

Fundamental Research on Motion and Vibration Control of a Three-Dimensional Flexible Shaking Table with Test Structure

Yibo Zhang, Toru WATANABE, Kazuto Seto

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Abstract

This paper presents a new method for the motion and vibration control of a three-dimensional flexible shaking table. The shaking table needs to be lightweight in order to be able to exactly reproduce earthquake waves and a variety of input signals. However, elastic modes then appear on the shaking table while operated in the frequency region. It is therefore important to simultaneously control the motion and vibration of the shaking table. The purpose of the research is to control the vibration and motion of a shaking table using the reduced order modeling technique and LQ and LQI control theory. The modeling procedure and control design are described. Control simulations on the discrete model are carried out to demonstrate the effectiveness of the method. Experimental work is presented in order to demonstrate a final verification.

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This paper presents a new method for the motion and vibration control of a three-dimensional flexible shaking table. The shaking table needs to be lightweight in order to be able to exactly reproduce earthquake waves and a variety of input signals. However, elastic modes then appear on the shaking table while operated in the frequency region. It is therefore important to simultaneously control the motion and vibration of the shaking table. The purpose of the research is to control the vibration and motion of a shaking table using the reduced order modeling technique and LQ and LQI control theory. The modeling procedure and control design are described. Control simulations on the discrete model are carried out to demonstrate the effectiveness of the method. Experimental work is presented in order to demonstrate a final verification.

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Available abstract

This paper presents a new method for the motion and vibration control of a three-dimensional flexible shaking table. The shaking table needs to be lightweight in order to be able to exactly reproduce earthquake waves and a variety of input signals. However, elastic modes then appear on the shaking table while operated in the frequency region. It is therefore important to simultaneously control the motion and vibration of the shaking table. The purpose of the research is to control the vibration and motion of a shaking table using the reduced order modeling technique and LQ and LQI control theory. The modeling procedure and control design are described. Control simulations on the discrete model are carried out to demonstrate the effectiveness of the method. Experimental work is presented in order to demonstrate a final verification.

Key concepts: Earthquake shaking table, Table (database), Vibration, Motion (physics), Vibration control, Structural engineering, Computer science, Motion control

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