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Recent advance on phase measuring deflectometry for obtaining 3D shape of specular surface

机译:近镜面测量偏转测量的最新进展

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Phase measuring deflectometry (PMD) is a superior technique to obtain 3D shape information of specular surfaces because of its advantages of large dynamic range, non-contact operation, full-field measurement, fast acquisition, high precision and automatic data processing. This paper reviews the recent advance on PMD. First, the basic principle of PMD is introduced following several fringe reflection methods. Then, a direct PMD (DPMD) method is presented for measuring 3D shape of specular objects having discontinuous surfaces. The DPMD method builds the relationship between phase and depth data, without gradient integration procedure. Next, an infrared PMD (IR-PMD) method is reviewed to measure specular objects. Because 1R light is used as a light source, the IR-PMD method is insensitive to the effect of ambient light and has high measurement accuracy. The following will analyze the effects of error sources, including nonlinear influence, lens distortion of imaging and projecting system, geometric calibration error, on the measurement results and evaluate the performance of the 3D shape measurement system. Finally, the future research directions of PMD will be discussed.
机译:相位测量偏转测量(PMD)是获得镜面3D形状的优异技术,因为它具有大动态范围,非接触操作,全场测量,快速采集,高精度和自动数据处理的优点。本文审查了最近PMD的进展。首先,在几个边缘反射方法下引入PMD的基本原理。然后,提出了一种用于测量具有不连续表面的镜面对象的3D形状的直接PMD(DPMD)方法。 DPMD方法构建相位和深度数据之间的关系,而无需渐变积分过程。接下来,审查红外PMD(IR-PMD)方法以测量镜面对象。由于1R光用作光源,因此IR-PMD方法对环境光的影响不敏感,并且具有高测量精度。以下将分析误差源的影响,包括非线性影响,成像和投影系统的镜头失真,几何校准误差,在测量结果上,评估3D形测量系统的性能。最后,将讨论PMD的未来研究方向。

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