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A new interferometric method for vibration measurement by electronic holography

机译:一种新的电子全息干涉测量方法

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摘要

Electronic holography is a well-established technique used in real-time, non-contact, whole-field displacement measurements. When using the real-time, time-averaged method for vibration measurments, the quantitative interpretation of dense fringe patterns is difficult because of speckle noise. Even when speckle-reducing procedures are used, such as multiple-frame averaging or rotation of the illumination beam, the remaining speckles and decreasing visibility of higher-order Bessel fringes are serious limitations. The primary objective of this paper is to present a new realtime, interferometric method for mechanical vibration measurements and the associated quantitative interpretation. The fringe pattern obtained by this method is quasi-binary and half as dense as in the time-averaged method. The method greatly improves the overall visibility (contrast, resolution) of vibration fringe patterns without any sacrifice in the real-time capabilities. Quantitative fringe interpretation is straightforward and based on binary fringe tracking. It allows quantitative measurements in situations where the time-averaged fringe processing fails.
机译:电子全息术是一种成熟的技术,用于实时,非接触式全场位移测量。当使用实时的,时间平均的方法进行振动测量时,由于斑点噪声,很难对密集的条纹图案进行定量解释。即使在使用减少斑点的程序(例如多帧平均或照明光束的旋转)时,剩余的斑点和高阶贝塞尔条纹的可见度降低也是严重的限制。本文的主要目的是提出一种用于机械振动测量和相关定量解释的实时干涉测量新方法。通过这种方法获得的条纹图案是准二进制的,密度是时间平均方法的一半。该方法极大地提高了振动条纹图案的整体可见性(对比度,分辨率),而没有牺牲任何实时功能。定量条纹解释很简单,并且基于二进制条纹跟踪。它可以在时间平均条纹处理失败的情况下进行定量测量。

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