Development of a multi-resolution measurement system based on light sectioning method

Weiguang Zhang, Hong Zhao, Xiang Zhou, Lu Zhang
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引用次数: 3

Abstract

With the rapid development of shape measurement technique, multi-resolution approach becomes one of valid way to enhance the accuracy. There are, however, still some key techniques such as simultaneous calibration and data fusion of several sensors being further studied. A multi-resolution system, which use light sectioning method, is developed and has been successful in many application areas for blade of aviation engine example. It can measure the shape of blade at high speed and high accuracy. The system is composed of four laser linear light sources, four or five cameras and three highprecision mechanical movement devices. Two cameras have relatively low amplifying ratios, and focus on the basin or back of blade where the radius of curvature is large. Other cameras have high amplifying ratios, and fix on the entering or ending edge of blade where the radius of curvature is small. So the system has 3600 measurement range and can carry out multi-resolution 3-D shape measurement with greatly different amplifying ratios of cameras. One measurement process has been finished when the blade mounted on mechanical movement device move up or down one time. Also the model building and principle of the measurement system, an algorithm of calibration and data fusion of several cameras are presented that calculate 3-D coordinates of one section of blade. The result shows that the accuracy of the system is about 0.05mm for the sectional circumradius approximately 50 mm measurement range, and also proves the system is feasible and efficient.
基于光切分法的多分辨率测量系统的研制
随着形状测量技术的迅速发展,多分辨率方法成为提高形状测量精度的有效途径之一。然而,多个传感器的同步标定和数据融合等关键技术仍有待进一步研究。以航空发动机叶片为例,开发了一种采用光切分法的多分辨率系统,并在多个应用领域取得了成功。它可以高速、高精度地测量叶片形状。该系统由四个激光线性光源、四五个摄像头和三个高精度机械运动装置组成。两个摄像头放大倍率相对较低,聚焦在曲率半径较大的叶片盆部或背面。其他的相机放大倍率高,固定在曲率半径小的叶片的进入边缘或结束边缘。因此,该系统具有3600测量范围,可以在不同相机放大倍率下进行多分辨率的三维形状测量。安装在机械运动装置上的叶片上下运动一次,即完成一次测量过程。介绍了测量系统的建模和原理,并给出了一种计算叶片剖面三维坐标的多摄像机标定和数据融合算法。结果表明,在截面半径约为50 mm的测量范围内,该系统的测量精度约为0.05mm,证明了该系统的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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