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Optimal localization of complex surfaces in CAD-based inspection

机译:基于CAD的检测中复杂表面的最佳定位

摘要

Complex surface inspection requires the optimal localization of the measured surface related to the design surface so that the two surfaces can be compared in a common coordinate frame. This paper presents a new technique for solving the localization problem. The basic approach consists of two steps: (1) rough localization of the measured points to the design surface based on curvature features, which can produce a good initial estimate for the optimal localization; (2) fine localization based on the least-square principle so that the deviation between the measured surface and the design surface is minimized. To efficiently compute the closest points on the design surface of the measured points, a novel method is proposed. Since this approach does not involve an iterative process of solving non-linear equations for the closest points, it is more convenient and robust. The typical complex surface is used to test the developed algorithm. Analysis and comparison of experimental results demonstrate the validity and applicability of the algorithm.
机译:复杂的表面检查要求与设计表面相关的被测表面的最佳定位,以便可以在一个公共坐标系中比较两个表面。本文提出了一种解决定位问题的新技术。基本方法包括两个步骤:(1)基于曲率特征将测量点粗略定位到设计表面,这可以为最佳定位提供良好的初始估计; (2)基于最小二乘原理的精细定位,以使被测表面和设计表面之间的偏差最小。为了有效地计算出设计点上设计点的最接近点,提出了一种新的方法。由于此方法不涉及求解最接近点的非线性方程的迭代过程,因此更方便且更可靠。典型的复杂表面用于测试开发的算法。实验结果的分析和比较证明了该算法的有效性和适用性。

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