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Semi-active vibration control in cable-stayed bridges under the condition of random wind load
This paper aims at an experimental study on the real-time vibration control of bridge structures using a semi-active vibration control method that has been in the spotlight recently. As structures are becoming larger and larger, structural harmful vibration caused by unspecified external forces such as earthquakes, gusts of wind, and collisions has been brought to attention as an important issue. These harmful vibrations can cause not only user anxiety but also severe structural damage or even complete failure of structures. Therefore, in view of structural safety and economical long-term maintenance, real-time control technology of the harmful structural vibration is urgently required. In this paper, a laboratory-scale model of a cable-stayed bridge was built, and a shear-type MR damper and a semi-active vibration control algorithm (Lyapunov and clipped optimal) were applied for the control of harmful vibration of the model bridge, in real time. On the basis of the test results, each semi-active control algorithm was verified quantitatively.
Semi-active vibration control in cable-stayed bridges under the condition of random wind load
This paper aims at an experimental study on the real-time vibration control of bridge structures using a semi-active vibration control method that has been in the spotlight recently. As structures are becoming larger and larger, structural harmful vibration caused by unspecified external forces such as earthquakes, gusts of wind, and collisions has been brought to attention as an important issue. These harmful vibrations can cause not only user anxiety but also severe structural damage or even complete failure of structures. Therefore, in view of structural safety and economical long-term maintenance, real-time control technology of the harmful structural vibration is urgently required. In this paper, a laboratory-scale model of a cable-stayed bridge was built, and a shear-type MR damper and a semi-active vibration control algorithm (Lyapunov and clipped optimal) were applied for the control of harmful vibration of the model bridge, in real time. On the basis of the test results, each semi-active control algorithm was verified quantitatively.
Semi-active vibration control in cable-stayed bridges under the condition of random wind load
Heo, G. (author) / Jeon, Joonryong (author)
Smart Materials and Structures ; 23 ; 075027/1-075027/19
2014
19 Seiten, 30 Quellen
Article (Journal)
English
Semi-active vibration control in cable-stayed bridges under the condition of random wind load
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|Rain-wind induced vibration of cable-stayed bridges
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|Wind-induced vibration of cables of cable-stayed bridges
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|Wind-induced vibration of cables of cable-stayed bridges
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|Active tendon control of cable-stayed bridges
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|