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首页> 外文期刊>Journal of intelligent material systems and structures >Waveform optimization of a two-axis smooth impact drive mechanism actuator
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Waveform optimization of a two-axis smooth impact drive mechanism actuator

机译:双轴平滑冲击驱动机构执行器的波形优化

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摘要

This paper presents a data-driven method for waveform optimization of a two-axis smooth impact drive mechanism (SIDM) actuator. The actuator was constructed by two piezoelectric elements (PZTs) perpendicularly fixed to an L-shaped base for two-axis positioning. An XY stage was designed and constructed by assembling the two-axis SIDM actuator. The XY stage could position long motion ranges of several millimeters with nanometer-level resolution, and the size was confined to be 20 mm (X) × 20 mm (Y) × 4.5 mm (H). The data-driven method based on the long short-term memory (LSTM) neural networks was used to predict the optimum input voltage waveform of the actuator. With the optimized input voltage waveform, it was verified that the maximum velocity of the stage could be improved about two times.
机译:本文介绍了双轴平滑冲击驱动机构(SIDM)执行器的波形优化数据驱动方法。致动器由两个压电元件(PZT)构成,该压电元件(PZTS)垂直于用于双轴定位的L形底座。通过组装双轴SIDM执行器设计和构建XY阶段。 XY阶段可以定位几毫米的长运动范围,纳米级分辨率,尺寸限制为20mm(x)×20mm(y)×4.5mm(h)。基于长短期存储器(LSTM)神经网络的数据驱动方法用于预测致动器的最佳输入电压波形。利用优化的输入电压波形,验证了阶段的最大速度可以提高两倍。

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