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首页> 外文期刊>International journal of automation technology >Software Datum Design for Cross-Axis Motion Measurement of X-Stage Based on Least Uncertainty Criterion
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Software Datum Design for Cross-Axis Motion Measurement of X-Stage Based on Least Uncertainty Criterion

机译:基于最小不确定度标准的X轴跨轴运动测量软件基准设计

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Cross-axis translational motion of a table on a machine tool is important in ultraprecision processes. Currently, conventional software datums that separate the cross-axis motion from the straightness profile of the straightedge by using multiple sensors and/or multiple arrangements are well-known. However, in large sampling numbers, the multiple sensor method tends to propagate random error. In this paper, a novel software datum for cross-axis motion measurement that can reduce the uncertainty due to the datum profile, pitch motion and random error is proposed. The proposed method consists of a weighted addition and inverse filtering. The suitable weight for the weighted addition yielding the least uncertainty is derived by an equation using standard deviations of the datum profile, pitch motion and random error of the sensors.
机译:机床上工作台的横轴平移运动在超精密过程中很重要。当前,通过使用多个传感器和/或多种布置来将横轴运动与直尺的平直度轮廓分开的常规软件数据是众所周知的。但是,在大量采样中,多传感器方法往往会传播随机误差。本文提出了一种新型的横轴运动测量软件基准面,该基准面可以减少由于基准面轮廓,俯仰运动和随机误差引起的不确定性。所提出的方法包括加权加法和逆滤波。通过使用基准轮廓的标准偏差,俯仰运动和传感器的随机误差的方程,可以得出产生最小不确定性的加权加法的合适权重。

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