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首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >Modeling of Piezoelectric Actuator Based on Hysteretic Nonlinear Theory
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Modeling of Piezoelectric Actuator Based on Hysteretic Nonlinear Theory

机译:基于迟滞非线性理论的压电执行器建模

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摘要

A kind of piezoelectric actuator model based on hysteretic nonlinear theory was developed. Van de Pol item was introduced to interpret hysteresis phenomenon of voltage-displacement curve of piezoelectric ceramics. The coupling relationship among strain, stress and voltage was obtained in partial least-square regression method to describe the driftage phenomenon of voltage-strain curve in different stress. The result of forecast test shows that the piezoelectric ceramics model accords with experimental data well. Based on the new piezoelectric ceramics model, the mechanical model of piezoelectric actuator was developed, and dynamic models of simply-supported beam system with piezoelectric actuator in uncontrolled and controlled states were set up. The resilience and damping force caused by strain were considered in the model. The new piezoelectric actuator model has simple form and is easy to be analyzed in theory, which is helpful to vibration control.
机译:建立了基于滞后非线性理论的压电致动器模型。介绍了Van de Pol项目来解释压电陶瓷的电压-位移曲线的滞后现象。采用偏最小二乘回归方法得到了应变,应力和电压的耦合关系,描述了不同应力下电压-应变曲线的漂移现象。预测测试结果表明,压电陶瓷模型与实验数据吻合良好。基于新的压电陶瓷模型,建立了压电致动器的力学模型,建立了压电致动器处于不受控制和受控状态的简支梁系统动力学模型。在模型中考虑了应变引起的回弹力和阻尼力。新的压电致动器模型形式简单,理论上易于分析,有助于振动控制。

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