Li Yanling, Zhang Zonghua, Xu Yongjia, Gao Feng, Wang Ruiyang, Yu Yang, Gao Nan, Meng Zhaozong, Jiang Xiangqian
Opt Express. 2024 Jun 3;32(12):21577-21593. doi: 10.1364/OE.520849.
Phase measuring deflectometry (PMD) is a key measurement technology for specular surfaces form measurement. Compared with conventional PMD techniques, the near optical coaxial PMD (NCPMD) can achieve compact configuration, light weight and reducing measurement error caused by shadows of the surface structures through utilizing a plate beamsplitter. However, the introduction of the plate beamsplitter will affect the measurement accuracy of the NCPMD system. The refraction of the plate beamsplitter needs to be considered. In this work, a virtual system of NCPMD was established, and an error model of the NCPMD system by considering the refraction influence of the plate beamsplitter was presented to analyze the shape reconstruction error caused by the plate beamsplitter. Moreover, the calibration method of the beamsplitter and the ray tracing algorithm to achieve error compensation of the beamsplitter were proposed. The proposed error compensation method can effectively improve the measurement accuracy of NCPMD system which has been confirmed by surface measurement experiments.
相位测量偏折术(PMD)是用于镜面表面形状测量的关键测量技术。与传统的PMD技术相比,近光学同轴PMD(NCPMD)通过使用平板分束器可实现结构紧凑、重量轻,并减少由表面结构阴影引起的测量误差。然而,平板分束器的引入会影响NCPMD系统的测量精度。需要考虑平板分束器的折射。在这项工作中,建立了NCPMD的虚拟系统,并提出了考虑平板分束器折射影响的NCPMD系统误差模型,以分析由平板分束器引起的形状重建误差。此外,还提出了分束器的校准方法和实现分束器误差补偿的光线追踪算法。所提出的误差补偿方法可以有效提高NCPMD系统的测量精度,这已通过表面测量实验得到证实。