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Improved infrared phase measuring deflectometry method for the measurement of discontinuous specular objects

机译:改进的红外相位测量偏转测量方法,用于测量不连续镜面物体

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摘要

For phase-measuring deflectometry (PMD), the selection of light source is a crucial factor for guaranteeing the measurement accuracy. Since visible light is sensitive to the ambient light, the reconstructed 3D shapes of PMD systems will be affected by the external environment in actual measurements. To tackle this issue, a method named Infrared-PMD (IR-PMD) has been developed, which exploits IR as the light source and directly measures specular objects having discontinuous surfaces from phase data by moving an IR camera and the measured specular surfaces together to realize two screens measurement. However, the movement of the measured objects during the experimental measurement procedure will cause random errors. For further optimizing this system, this paper exploits an IR digital display's movement to substitute the camera and the measured object's movement. A smaller IR projector projecting sinusoidal fringe patterns onto a ground glass is regarded as an IR digital screen. The projector and the ground glass are moved to two positions to realize two screens measurement. Fringe reflection technique is used to obtain the phase information. Then, 3D shape data can be directly calculated by the phase data on the IR digital screen located at two positions. Experimental results demonstrate that 3D shape of discontinuous specular objects can be effectively and accurately measured by the improved IR-PMD.
机译:对于相位测量偏转测量(PMD),光源的选择是保证测量精度的关键因素。由于可见光对环境光敏感,因此PMD系统的重建3D形状将受到实际测量中的外部环境的影响。为了解决这个问题,已经开发了一种名为红外PMD(IR-PMD)的方法,该方法利用IR作为光源,并通过将IR相机和测量的镜面一起移动到相位数据,直接测量具有来自相位数据的镜面对象。实现两个屏幕测量。然而,测量物体在实验测量过程中的运动将导致随机误差。为了进一步优化该系统,本文利用IR数字显示器的运动来替代相机和测量物体的运动。将正弦条纹图案突出到地面玻璃上的较小的IR投影仪被视为IR数字屏幕。投影仪和地面玻璃移动到两个位置以实现两个屏幕测量。边缘反射技术用于获得相位信息。然后,可以通过位于两个位置的IR数字屏幕上的相位数据直接计算3D形状数据。实验结果表明,通过改进的IR-PMD可以有效且精确地测量不连续镜面对象的3D形状。

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