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基于自校准方法的二维激光系统几何特性表征及交叉网格编码器校准

Geometrical Characterisation of a 2D Laser System and Calibration of a Cross-Grid Encoder by Means of a Self-Calibration Methodology.

作者信息

Torralba Marta, Díaz-Pérez Lucía C, Valenzuela Margarita, Albajez José A, Yagüe-Fabra José A

机构信息

Centro Universitario de la Defensa, Ctra. Huesca s/n, Zaragoza 50090, Spain.

I3A, University of Zaragoza, C/María de Luna 3, Zaragoza 50018, Spain.

出版信息

Sensors (Basel). 2017 Aug 31;17(9):1992. doi: 10.3390/s17091992.

Abstract

This article presents a self-calibration procedure and the experimental results for the geometrical characterisation of a 2D laser system operating along a large working range (50 mm × 50 mm) with submicrometre uncertainty. Its purpose is to correct the geometric errors of the 2D laser system setup generated when positioning the two laser heads and the plane mirrors used as reflectors. The non-calibrated artefact used in this procedure is a commercial grid encoder that is also a measuring instrument. Therefore, the self-calibration procedure also allows the determination of the geometrical errors of the grid encoder, including its squareness error. The precision of the proposed algorithm is tested using virtual data. Actual measurements are subsequently registered, and the algorithm is applied. Once the laser system is characterised, the error of the grid encoder is calculated along the working range, resulting in an expanded submicrometre calibration uncertainty (k = 2) for the X and Y axes. The results of the grid encoder calibration are comparable to the errors provided by the calibration certificate for its main central axes. It is, therefore, possible to confirm the suitability of the self-calibration methodology proposed in this article.

摘要

本文介绍了一种自校准程序以及沿大工作范围(50毫米×50毫米)运行且具有亚微米级不确定度的二维激光系统几何特性表征的实验结果。其目的是校正二维激光系统设置在定位两个激光头和用作反射镜的平面镜时产生的几何误差。此程序中使用的未校准工件是一种商业光栅编码器,它也是一种测量仪器。因此,自校准程序还可确定光栅编码器的几何误差,包括其垂直度误差。使用虚拟数据对所提算法的精度进行了测试。随后进行实际测量并应用该算法。一旦对激光系统进行了表征,即可沿工作范围计算光栅编码器的误差,从而得出X轴和Y轴的扩展亚微米级校准不确定度(k = 2)。光栅编码器校准结果与校准证书为其主要中心轴提供的误差相当。因此,可以确认本文所提自校准方法的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b5f/5620732/8afc69065abb/sensors-17-01992-g001.jpg

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