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Aperiodic sinusoidal fringes in comparison to phase-shifted sinusoidal fringes for high-speed three-dimensional shape measurement

机译:非相移正弦条纹与相移正弦条纹相比,可进行高速三维形状测量

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In order to optically reconstruct the three-dimensional (3-D) surface shape of moving objects or deformation processes, aside from high-speed cameras, high-speed projectors and/or short projection sequences are necessary. One approach is to project a series of aperiodic sinusoidal fringes, e.g., by using an array projector that can achieve frame rates of several 10 kHz. So far, we have demonstrated the fundamental functionality of a 3-D sensor based on this projection technique. Now the measurement principle itself is to be compared with phase-shifting fringe projection as probably the most widely used technique. Theoretical considerations as well as experimental investigations are conducted to derive criteria for the design of optimal sequences of aperiodic sinusoidal fringes and to compare the number of patterns of both approaches necessary for comparable accuracies.
机译:为了光学地重建移动物体的三维(3-D)表面形状或变形过程,除了高速相机,高速投影仪和/或短投影序列外,还需要。一种方法是例如通过使用可以实现几10 kHz帧频的阵列投影仪来投影一系列非周期性正弦条纹。到目前为止,我们已经展示了基于这种投影技术的3-D传感器的基本功能。现在,将测量原理本身与相移条纹投影(可能是最广泛使用的技术)进行比较。进行了理论考虑和实验研究,以得出非周期性正弦条纹最佳序列设计的标准,并比较了可比较精度所必需的两种方法的模式数量。

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