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Active Vibration Control of Trapezoidal Plate Using MFC Collocated Sensor/Actuator
The article concerns the problem of searching for the effective controller design method to suppress the vibration of trapezoidal plate clamped at the edge. The paper presents an active vibration reduction system, in which the smart materials such as the collocated MFC sensor and actuator are used for vibration cancelation. For the considered system, the ARX method of discrete-time model identification for real-time active vibration control has been applied. On the basis of this model, the control algorithm has been developed. The correctness and effectiveness of the regulator has been verified using different measuring techniques, including scanning vibrometer. The simulation results show that the designed structure of a close-loop system provides substantial vibration suppression).
Active Vibration Control of Trapezoidal Plate Using MFC Collocated Sensor/Actuator
The article concerns the problem of searching for the effective controller design method to suppress the vibration of trapezoidal plate clamped at the edge. The paper presents an active vibration reduction system, in which the smart materials such as the collocated MFC sensor and actuator are used for vibration cancelation. For the considered system, the ARX method of discrete-time model identification for real-time active vibration control has been applied. On the basis of this model, the control algorithm has been developed. The correctness and effectiveness of the regulator has been verified using different measuring techniques, including scanning vibrometer. The simulation results show that the designed structure of a close-loop system provides substantial vibration suppression).
Active Vibration Control of Trapezoidal Plate Using MFC Collocated Sensor/Actuator
Mierzeiewski, Konrad (author) / Leniowska, Lucyna (author)
2018-09-01
1404593 byte
Conference paper
Electronic Resource
English
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