三维翼型表面光学测量的混合线性补偿和改进Hermite插值

Xiao Qi Chen, Danwei W. Wang, Songlin Bai, Wen-Jong Lin
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引用次数: 2

摘要

激光扫描仪等非接触式光学测量系统已广泛应用于三维轮廓测量。然而,在测量抛光涡轮翼型的情况下,表面的镜面反射在每次光学扫描中都会导致“不可测量”的间隙。传统的线性插值和样条插值等技术在从这些“损坏”的测量数据集重建表面时变得无效。本工作发展了一种将分段三次埃尔米特插值与线性补偿相结合的混合技术。该技术很好地保留了形状,并在镜面反射间隙中产生光滑的曲率。与样条插值法相比,该方法具有更好、更精确的轮廓拟合效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid linear compensation and improved Hermite interpolation for optical measurement of 3D airfoil surface
Non-contact optical measurement systems such as laser scanner have been widely used to measure 3D profiles. In the case of measuring a polished turbine airfoil, however, specular reflection on the surface causes "non-measurable" gaps in each optical scan. Conventional techniques like linear interpolation and spline interpolation become ineffective in reconstructing the surface from such "corrupted" measurement data sets. This work develops a hybrid technique that combines piecewise cubic Hermite interpolation with linear compensation. The technique preserves the shape well, and generates smooth curvature in the specular reflection gap. In comparison with spline interpolation, it achieves better and more accurate profile fitting.
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