首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Adapted Fringe Projection Sequences for Changing Illumination Conditions on the Example of Measuring a Wrought-Hot Object Influenced by Forced Cooling
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Adapted Fringe Projection Sequences for Changing Illumination Conditions on the Example of Measuring a Wrought-Hot Object Influenced by Forced Cooling

机译:适应的条纹投影序列用于改变照明条件用于测量受强制冷却影响的锻造物体的示例

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摘要

Optical 3D geometry reconstruction, or more specific, fringe projection profilometry, is a state-of-the-art technique for the measurement of the shape of objects in confined spaces or under rough environmental conditions, e.g., while inspecting a wrought-hot specimen after a forging operation. While the contact-less method enables the measurement of such an object, the results are influenced by the light deflection effect occurring due to the inhomogeneous refractive index field induced by the hot air around the measurand. However, the developed active compensation methods to fight this issue exhibits a major drawback, namely an additional cooling of the object and a subsequent transient illumination component. In this paper, we investigate the cooling and its effect on temporal phase reconstruction algorithms and take a theoretical approach to its compensation. The simulated compensation measures are transferred to a fringe projection profilometry setup and are evaluated using established and newly developed methods. The results show a significant improvement when measuring specimens under a transient illumination and are easily transferable to any kind of multi-frequency phase-shift measurement.
机译:光学3D几何重建,或更具体的边缘投影轮廓测量,是用于测量限制空间中的物体形状或在粗糙的环境条件下测量物体的形状,例如,在检查锻造的标本之后锻造操作。虽然较少的接触方法能够测量这种物体,但结果受到由于由尺寸热空气引起的不均匀折射率场而发生的光偏转效应的影响。然而,用于对抗这个问题的发达的活跃补偿方法表现出主要的缺点,即对象的额外冷却和随后的瞬态照明组件。在本文中,我们研究了对时间相重构算法的冷却及其影响,并采取了对其补偿的理论方法。模拟补偿措施被转移到条纹投影轮廓测定装置,并使用已建立的和新开发的方法进行评估。当在瞬态照明下测量样品时,结果显示出显着的改善,并且易于转移到任何类型的多频移相测量。

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