首页> 外文会议>Proceedings of 2007 8th International Conference on Electronic Measurement Instruments >Active Vibration Control by Piezoelectric Self-sensing Actuator for Beam under a Moving Mass
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Active Vibration Control by Piezoelectric Self-sensing Actuator for Beam under a Moving Mass

机译:运动质量下压电自感应执行器对梁的主动振动控制

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This research aims at the dynamic response and the active vibration control with piezoelectric self-sensing actuators for the cantilever beam under a moving mass. After analyzing the vibration characteristics of the beam under a moving mass, the active vibration control technology is introduced to suppress its vibration. The dynamic response model and state space model for active vibration control of beam under a moving mass is established. Then the piezoelectric self-sensing actuator sensing signal separation method based on two-dimension adaptive compensating principle is put forward. And the adaptive fuzzy control strategy is introduced to suppress the beam vibration. The testing system of dynamic response and active vibration control for beam under a moving mass is designed and developed. The experimental results showed the effectiveness of this kind of control strategy for beam bonded with piezoelectric self-sensing actuator under a moving mass, which demonstrated that using the smart material could suppress actively the time-varying flexible structure vibration.
机译:这项研究的目标是在运动质量下,利用压电自感应执行器对悬臂梁进行动态响应和主动振动控制。在分析梁在运动质量下的振动特性后,引入了主动振动控制技术以抑制其振动。建立了运动质量下梁的主动振动控制的动态响应模型和状态空间模型。提出了一种基于二维自适应补偿原理的压电自感执行器传感信号分离方法。引入了自适应模糊控制策略来抑制梁的振动。设计开发了梁动响应和振动主动控制试验系统。实验结果表明,这种控制策略在运动质量下对压电自感应致动器束缚梁的控制是有效的,这表明使用智能材料可以有效抑制时变柔性结构的振动。

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