Diao Kuan, Chen Cheng, Leach Richard, Liu Xiaojun, Lu Wenlong, Yang Wenjun
Appl Opt. 2022 Feb 20;61(6):1284-1291. doi: 10.1364/AO.448912.
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.
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。