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3-D precision surface measurement by dynamic structured light

机译:通过动态结构光线3-D精密表面测量

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This paper describes a 3-D imaging technique developed as an internal research project at Southwest Research Institute, The technique is based on an extension of structured light methods in which a projected pattern of parallel lines is rotated over the surface to be measured. A sequence of images is captured and the surface elevation at any location can then be determined from measurements of the temporal pattern, at any point, without considering any other points on the surface. The paper describes techniques for system calibration and surface measurement based on the method of projected quadric shells. Algorithms were developed for image and signal analysis and computer programs were written to calibrate the system and to calculate 3-D coordinates of points on a measured surface. A prototype of the Dynamic Structured Light (DSL) 3-D imaging system was assembled and typical parts were measured. The design procedure was verified and used to implement several different configurations with different measurement volumes and measurement accuracy. A small-parts measurement accuracy of 32 micrometers (.0012") RMS was verified by measuring the surface of a precision-machined plane. Large aircraft control surfaces were measured with a prototype setup that provided .02" depth resolution over a 4' by 8' field of view. Measurement times are typically less than three minutes for 300,000 points. A patent application has been filed.
机译:本文介绍开发作为在西南研究院的内部研究项目3-d成像技术,该技术是基于在其中的平行线的投影的图案被旋转到待测量的表面结构化光的方法的扩展。图像序列被捕获并且然后可以从时间模式的测量值来确定在任何位置处的表面高度,在任何点处,在不考虑表面上的任何其它点。本文描述了基于投影二次壳的方法为系统校准和表面测量技术。算法被用于图像和信号分析开发和计算机程序被写入到系统校准,并在测量的表面点计算的3-d的坐标。动态结构光(DSL)的原型3-d成像系统装配并测量典型部件。设计过程进行了检查,用于实现与不同的测量体积和测量精度几个不同的配置。的32微米(0.0012“)的小部分的测量精度RMS是通过测量一个精密加工的平面的表面验证。用一个原型设置所提供0.02测定大型飞机控制表面”通过在4' 的深度分辨率8' 的视场。测量时间通常不到三分钟300,000点。专利申请已经提交。

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