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Remote Interferometry by Digital Holography for Shape Control

机译:数字全能的远程干涉测量用于形状控制

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Modern production requires more and more effective methods for the inspection and quality control at the production place. Outsourcing and globab'zation result in possible large distances between co-operating partners. This may cause serious problems with respect to the just-in-time exchange of information and the response to possible violations of quality standards. Consequently new challenges arise for optical measurement techniques especially in the field of industrial shape control. A possible solution for these problems can be delivered by a technique that stores optically the full 3D information of the objects to be compared and where the data can be transported over large distances. In this paper we describe the progress in implementing a new technique for the direct comparison of the shape and deformation of two objects with different microstructure where it is not necessary that both samples are located at the same place. This is done by creating a coherent mask for the illumination of the sample object. The coherent mask is created by Digital Holography to enable the instant access to the complete optical information of the master object at any wanted place. The transmission of the digital master holograms to this place can be done via digital telecommunication networks. The comparison can be done in a digital or analogue way. Both methods result in a disappearance of the object shape and the appearance of the shape or deformation difference between the two objects only. The analogue reconstruction of the holograms with a liquid crystal spatial light modulator can be done by using the light modulator as an intensity modulator or as an phase modulator. The reconstruction technique and the space bandwidth of the light modulator will influence the quality of the result. Therefore the paper describes the progress in applying modern spatial light modulators and digital cameras for the effective storage and optical reconstruction of coherent masks.
机译:现代生产需要越来越多的有效方法,可以在生产地方进行检查和质量控制。外包和Globab'zation会导致合作伙伴之间可能的较大距离。这可能对信息交换的正常信息和对可能违反质量标准的响应来造成严重问题。因此,光学测量技术尤其是在工业形状控制领域的新挑战。这些问题的可能解决方案可以通过存储待比较对象的完整3D信息的技术来传送,并且在大距离上可以传送数据。在本文中,我们描述了实现一种新技术的进展,其具有不同微结构的两个物体的形状和变形的直接比较,其中两个样品都没有必要位于同一位置。这是通过创建用于样本对象的照明的相干掩模来完成的。通过数字全息术创建相干掩码,以使得能够即时访问任何通缉的地方的主对象的完整光学信息。可以通过数字电信网络来完成数字主主图的传输到这个地方。比较可以以数字或模拟方式完成。这两种方法都会导致物体形状的消失和仅两种物体之间的形状或变形差异的外观。具有液晶空间光调制器的全息图的模拟重建可以通过使用光调制器作为强度调制器或作为相位调制器来完成。重建技术和光调制器的空间带宽将影响结果的质量。因此,本文介绍了应用现代空间光调制器和数码相机的进展,以实现一致掩模的有效存储和光学重建。

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