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A THREE-LEVEL CHECKERBOARD PATTERN (TCP) PROJECTION METHOD FOR CURVED SURFACE MEASUREMENT

机译:曲面测量的三层棋盘图案(TCP)投影方法

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This paper describes a new pattern projection method by which the 3D range and shape of a curved surface can be measured simply, rapidly and precisely. A three-level checkerboard pattern (TCP) is projected onto a curved surface, and the projection pattern on the surface is observed by a well-defined camera. The spatial feature codes of the TCP are used to match an observed pattern image to the slide mask pattern. This method provides high spatial resolution and makes it possible to take highly accurate measurements of stable and moving object surfaces. A new approach for rapid and precise calibration of the slide projector is also presented. In our experiments using real objects about 0.8 m from the camera, the surface measurement error was 0.5-1 mm in S.D. and 2 mm maximum, which corresponds to a relative accuracy of about 0.2%. This result coincides well with the theoretical prediction from image digitizing errors. The semi-automatic procedure for surface measurement together with camera and projector calibrations can be completed within 40 s, which includes CPU time of about 5 s in VAX11/780 (1 MIPS) [References: 19]
机译:本文介绍了一种新的图案投影方法,通过该方法可以简单,快速和精确地测量曲面的3D范围和形状。将三级棋盘图案(TCP)投影到曲面上,并通过定义明确的相机观察该表面上的投影图案。 TCP的空间特征代码用于将观察到的图案图像与滑动掩模图案进行匹配。这种方法提供了很高的空间分辨率,并可以对稳定和运动的物体表面进行高精度测量。还提出了一种用于幻灯片放映机快速准确校准的新方法。在我们使用距相机约0.8 m的真实物体进行的实验中,表面测量误差在S.D中为0.5-1 mm。最大2毫米,相对精度约为0.2%。该结果与图像数字化误差的理论预测非常吻合。半自动的表面测量过程以及相机和投影仪的校准可以在40 s内完成,其中包括在VAX11 / 780(1 MIPS)中的CPU时间约为5 s [参考:19]

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