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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Self-sensing force control of a piezoelectric actuator
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Self-sensing force control of a piezoelectric actuator

机译:压电执行器的自感应力控制

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摘要

This paper describes an approach to controlling the force generated by a piezoelectric actuator (PEA) accurately without using any force sensor. A model PEA is proposed that includes a new asymmetric hysteresis operator and that takes the external force into account. A detection model is deduced that allows computation in real time of the PEA elongation and generated force starting from the measurement of the driving voltage and current. This detection model is used to replace a force sensor for closed-loop force control of a PEA. Experiments are carried out using 2 PEAs in an experimental setup. The first actuator is the controlled actuator, and the second one is used as a dynamic controllable mechanical load. It is shown that a good control performance can be obtained whatever the mechanical loading conditions.
机译:本文介绍了一种无需使用任何力传感器即可精确控制压电致动器(PEA)产生的力的方法。提出了一种模型PEA,该模型包括一个新的非对称磁滞算子并考虑了外力。推导了一种检测模型,该模型允许从驱动电压和电流的测量开始实时计算PEA伸长率和产生的力。该检测模型用于代替用于PEA闭环力控制的力传感器。在实验设置中使用2个PEA进行实验。第一个执行器是受控执行器,第二个执行器用作动态可控机械负载。结果表明,无论机械负载条件如何,都可以获得良好的控制性能。

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