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A DYNAMIC MODEL INCORPORATING THERMAL EFFECT FOR PIEZOELECTRIC STICK-SLIP ACTUATORS

机译:压电粘性滑动执行器的热效应动力学模型

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It was found experimentally from our previous study that the operation of the piezoelectric actuator (PEA) and the friction in the piezoelectric stick-slip actuator (PE-SSA) can cause significant rise in temperature, thereby degrading the performance of the actuator. This paper presents a dynamic model for the PE-SSA by taking into account thermal effect. In particular, the dynamic model is developed by integrating the PEA model proposed by Adriaens et al. [1] and the LuGre friction model proposed by De Wit et al. [2]; the parameters involved in the models are determined using a system identification approach. Experiments are carried out to verify the effectiveness of the model. It is shown that the simulation and experimental results are in a good agreement. This study provides a new way to model thermal effect for other micro motion systems.
机译:从我们先前的研究中实验发现,压电致动器(PEA)的操作和压电粘滑致动器(PE-SSA)中的摩擦会导致温度显着升高,从而降低致动器的性能。本文考虑了热效应,提出了PE-SSA的动态模型。特别是,动态模型是通过整合Adriaens等人提出的PEA模型开发的。 [1]和De Wit等人提出的LuGre摩擦模型。 [2];使用系统识别方法确定模型中涉及的参数。进行实验以验证该模型的有效性。结果表明,仿真结果与实验结果吻合良好。这项研究为其他微运动系统的热效应建模提供了一种新方法。

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