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Detecting Nano-Scale Vibrations in Rotating Devices by Using Advanced Computational Methods

机译:使用先进的计算方法检测旋转设备中的纳米级振动

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This paper presents a computational method for detecting vibrations related to eccentricity in ultra precision rotation devices used for nano-scale manufacturing. The vibration is indirectly measured via a frequency domain analysis of the signal from a piezoelectric sensor attached to the stationary component of the rotating device. The algorithm searches for particular harmonic sequences associated with the eccentricity of the device rotation axis. The detected sequence is quantified and serves as input to a regression model that estimates the eccentricity. A case study presents the application of the computational algorithm during precision manufacturing processes.
机译:本文提出了一种用于检测用于纳米级制造的超精密旋转装置中与偏心率相关的振动的计算方法。振动是通过对来自压电传感器的信号进行频域分析来间接测量的,该压电传感器安装在旋转设备的固定组件上。该算法搜索与设备旋转轴的偏心率相关的特定谐波序列。对检测到的序列进行量化,并用作估计偏心率的回归模型的输入。案例研究显示了计算算法在精密制造过程中的应用。

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