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A CMM-Based Method of Control Point Position Calibration for Light Pen Coordinate Measuring System

机译:灯坐标测量系统基于CMM的控制点位置校准方法

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摘要

A light pen coordinate measuring system (LPCMS) is a kind of vision-based portable coordinate measuring technique. It implements coordinate measurement by analyzing the image of a light pen, which has several control points and a probe. The relative positions of control points need to be determined before measurement and serve as the measuring basis in LPCMS. How to accurately calibrate the relative positions of control points is the most important issue in system calibration. In this paper, a new method of control point position calibration based on a traditional coordinate measuring machine (CMM) is proposed. A light pen is fastened to the measuring arm of a CMM and performs accurate translational movement driven by the CMM. A camera is used to capture the images of control points at different positions, and the corresponding readings of the CMM are recorded at the same time. By establishing a separate coordinate system for each control point, the relative positions of the control points can be transformed to the differences of a series of translation vectors. Experiments show that the calibration repeatability of control point positions can reach 10 μm and the standard deviation of measurement of the whole LPCMS can reach 30 μm. A CMM is used to generate accurate translation, which provides a high accuracy basis of calibration. Through certain mathematical treatment, tremendous data acquired by moving the light pen to tens of thousands of different positions can be processed in a simple way, which can reduce the influence of random error. Therefore, the proposed method provides a high-accuracy solution of control point position calibration for LPCMS.
机译:轻钢坐标测量系统(LPCMS)是一种基于视觉的便携式坐标测量技术。它通过分析浅笔的图像来实现坐标测量,这具有多个控制点和探头。在测量之前需要确定控制点的相对位置,并用作LPCMS中的测量基。如何准确校准控制点的相对位置是系统校准中最重要的问题。本文提出了一种基于传统坐标测量机(CMM)的控制点位置校准的新方法。将灯笔固定在CMM的测量臂上,并执行由CMM驱动的精确的平移运动。使用相机用于在不同位置处捕获控制点的图像,并且同时记录CMM的相应读数。通过为每个控制点建立单独的坐标系,可以将控制点的相对位置转换为一系列平移向量的差异。实验表明,控制点位置的校准可重复性可以达到10μm,并且整个LPCMS的测量标准偏差可以达到30μm。 CMM用于生成准确的翻译,提供高精度的校准基础。通过某些数学处理,可以以简单的方式处理通过将灯笔移动到数万个不同位置的巨大数据,这可以降低随机误差的影响。因此,所提出的方法为LPCMS提供了对控制点位置校准的高精度解。

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