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用于确定线性平台运动误差六自由度的串扰解耦测量方法。

Crosstalk decoupling measurement method to determine the six degrees of freedom of motion error of linear stages.

作者信息

Diao Kuan, Chen Cheng, Leach Richard, Liu Xiaojun, Lu Wenlong, Yang Wenjun

出版信息

Appl Opt. 2022 Feb 20;61(6):1284-1291. doi: 10.1364/AO.448912.

Abstract

The simultaneous measurement of all six degrees of freedom of motion error for a linear stage is significantly faster than methods that measure each degree of freedom separately. However, in current simultaneous measurement methods, error crosstalk issues significantly affect measurement accuracy. In this paper, a direct and simple crosstalk decoupling simultaneous measurement method to determine the six degrees of freedom of motion error of a linear stage is proposed. Based on the combination of single-frequency laser interferometry and laser self-collimation, a novel, to the best of our knowledge, optical configuration with a complete error decoupling relationship is designed, and a mathematical model is derived for error decoupling to address the crosstalk issue. A prototype system based on the new method is developed, and experiments are conducted to verify its effectiveness. Analysis shows that, compared with a commercial laser interferometer for linear stage measurement, the deviations of the positioning, horizontal straightness, vertical straightness, roll, pitch, and yaw errors are±0.50µ, ±0.58µ, ±0.50µ, ±1.02., ±0.72., and ±0.87. respectively, over a 200 mm measurement range.

摘要

同时测量线性平台运动误差的所有六个自由度,比单独测量每个自由度的方法要快得多。然而,在当前的同时测量方法中,误差串扰问题严重影响测量精度。本文提出了一种直接且简单的串扰解耦同时测量方法,用于确定线性平台运动误差的六个自由度。基于单频激光干涉测量法和激光自准直的结合,设计了一种据我们所知具有完整误差解耦关系的新型光学配置,并推导了用于误差解耦的数学模型以解决串扰问题。开发了基于新方法的原型系统,并进行实验以验证其有效性。分析表明,在200毫米的测量范围内,与用于线性平台测量的商用激光干涉仪相比,定位、水平直线度、垂直直线度、滚动、俯仰和偏航误差的偏差分别为±0.50µ、±0.58µ、±0.50µ、±1.02、±0.72和±0.87。

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