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Phase Unwrapping in Fast Fringe Projection Profilometry

机译:快速边缘投影轮廓仪中的相位展开

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Fringe projection profilometry (FPP) has become one of the most popular 3D information acquisition techniques being developed over the past three decades. In FPP, phase unwrapping is a critical step m acquiring the correspondence information for 3D reconstruction. Unlike traditional FPP which uses methods such as temporal phase unwrapping, fast FPP measurement systems require phase unwrapping of single phase map probably with discontinuous objects. Phase unwrapping in fast FPP such brings three difficulties, the separation of discontinuous wrapped phases, the unwrapping of each wrapped phase and the linking of the discontinuous phase segments. During FPP measurement of multiple objects, their corresponding phase maps may locate in different part of the measurement image or side by side. Object separation based on the modulation values along could not well identify the discontinuous boundaries. In this paper, the object separation based on modulation is adapted first to remove the background and separate isolated wrapped phases. For each isolated wrapped phase, local orientation coherence based discontinuous phase separation is further used to identify the existence of discontinuous boundaries. After the segmentation, spatial unwrapping method is applied to each wrapped phase segments. In the last, the phase segments are linked using a base phase map. Experimental results show that our algorithm works well for multiple and overlapping object measurements.
机译:条纹投影轮廓仪(FPP)已成为过去三十年来开发的最受欢迎的3D信息采集技术之一。在FPP中,相位展开是获取用于3D重建的对应信息的关键步骤。与使用时间相位展开等方法的传统FPP不同,快速FPP测量系统需要可能具有不连续对象的单相图的相位展开。快速FPP中的相解开带来了三个困难,即,不连续的包绕相的分离,每个被包裹的相的解开以及不连续相段的连接。在对多个对象进行FPP测量期间,它们对应的相位图可能位于测量图像的不同部分或并排放置。基于调制值的对象分离不能很好地识别不连续的边界。在本文中,首先采用基于调制的对象分离,以去除背景并分离孤立的包裹相位。对于每个孤立的包裹相,基于局部取向相干的不连续相分离还被用于识别不连续边界的存在。分割之后,将空间展开方法应用于每个包裹的相位段。最后,使用基本相位图链接相位段。实验结果表明,我们的算法适用于多个和重叠的物体测量。

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