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A Phase Compensation Method for Phase Extraction of Abrupt Surfaces in Projection Moire

机译:投影莫尔突然突出表面的相位补偿方法

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摘要

Projection moire method is a high-resolution, non-contacting and full-field optical measurement technique. But the 2-ambiguity problem in phase unwrapping limits the phase difference between neighbouring pixels under which makes projection moire method ineffective at measuring abrupt surfaces or steps. This paper aims at putting forward a phase compensation method to solve this 2-ambiguity problem in projection moire. Since the phase of moire pattern is the variance between the phase of specimen grating on object's surface and the phase of the reference grating, our method is to calculate the phases of specimen grating and the reference grating respectively, regard their difference as the phase of the moire pattern in theory and correct the wrong unwrapped moire fringe phase with integral multiple of 2. In order to acquire the phase of specimen grating which also has the 2-ambiguity problem, using multiple fringe pictures with different pitches. The experiments successfully reconstruct two objects with discontinuities in their surfaces. This phase compensation technique no longer requires us to count fringe orders or find a reference point to mark the zero-order moire fringe during experiments.
机译:投影莫尔法是一种高分辨率,非接触和全场光学测量技术。但是,相位展开中的2 - 模糊性问题限制了相邻像素之间的相位差使得投影莫尔法在测量突然表面或步骤时进行突出。本文旨在提出一个相位补偿方法来解决投影莫尔中的这种2模糊性问题。由于莫尔图案的阶段是物体表面上的样本光栅的相位与参考光栅的相位之间的差异,我们的方法是分别计算样品光栅和参考光栅的相位,以其与阶段视为差异理论上的莫尔模式并纠正错误的未包装的莫尔条纹阶段,其中倍数为2.为了获取样品光栅的阶段,该阶段也使用具有不同间距的多个边缘图像。实验成功地重建了两个物体,在其表面中不连续。这种相位补偿技术不再需要我们计算边缘订单或找到参考点以在实验期间标记零级莫尔条纹。

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