首页> 外文会议>2014 Recent Advances in Engineering and Computational Sciences >Active vibration control of a cantilevered plate instrumented with piezoelectric patches: Robust to variations in electric field
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Active vibration control of a cantilevered plate instrumented with piezoelectric patches: Robust to variations in electric field

机译:装有压电贴片的悬臂板的主动振动控制:对电场变化具有鲁棒性

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Piezoelectric coefficient and dielectric constant of PZT-5H vary with electric field. In this work, variations of these coefficients with electric field are included in finite element modelling of a cantilevered plate instrumented with piezoelectric patches. Finite element model is reduced using modal truncation and then converted into state-space. First three modal displacements and velocities are estimated using Kalman observer. Negative first modal velocity feedback is used to control the vibrations of the smart plate. Two cases are considered: 1. In which variation of piezoelectric coefficient and dielectric constant is considered in Kalman observer 2. In which variation of piezoelectric coefficient and dielectric constant is not considered in Kalman observer. Simulation results show that appreciable amount of error in simulation would be present if variation of these coefficients with r.m.s. value of electric field is ignored.
机译:PZT-5H的压电系数和介电常数随电场而变化。在这项工作中,这些系数随电场的变化包括在装有压电贴片的悬臂板的有限元建模中。有限元模型使用模态截断法进行简化,然后转换为状态空间。使用卡尔曼观测器估算前三个模态位移和速度。负第一模态速度反馈用于控制智能板的振动。考虑两种情况:1.在卡尔曼观测器中考虑压电系数和介电常数的变化; 2.在卡尔曼观测器中不考虑压电系数和介电常数的变化。仿真结果表明,如果这些系数随r.m.s的变化会在仿真中出现相当大的误差。电场值被忽略。

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