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Fiber-optic fringe projection with crosstalk reduction by adaptive pattern masking

机译:通过自适应图案掩膜减少串扰的光纤条纹投影

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摘要

To enable in-process inspection of industrial manufacturing processes, measuring devices need to fulfill time and space constraints, while also being robust to environmental conditions, such as high temperatures and electromagnetic fields. A new fringe projection profilometry system is being developed, which is capable of performing the inspection of filigree tool geometries, e.g. gearing elements with tip radii of 0.2 mm, inside forming machines of the sheet-bulk metal forming process. Compact gradient-index rod lenses with a diameter of 2 mm allow for a compact design of the sensor head, which is connected to a base unit via flexible high-resolution image fibers with a diameter of 1.7 mm. The base unit houses a flexible DMD based LED projector optimized for fiber coupling and a CMOS camera sensor. The system is capable of capturing up to 150 gray-scale patterns per second as well as high dynamic range images from multiple exposures. Owing to fiber crosstalk and light leakage in the image fiber, signal quality suffers especially when capturing 3-D data of technical surfaces with highly varying reflectance or surface angles. An algorithm is presented, which adaptively masks parts of the pattern to reduce these effects via multiple exposures. The masks for valid surface areas are automatically defined according to different parameters from an initial capture, such as intensity and surface gradient. In a second step, the masks are re-projected to projector coordinates using the mathematical model of the system. This approach is capable of reducing both inter-pixel crosstalk and inter-object reflections on concave objects while maintaining measurement durations of less than 5 s.
机译:为了能够对工业制造过程进行过程中检查,测量设备需要满足时间和空间限制,同时还要对高温和电磁场等环境条件具有鲁棒性。正在开发一种新的条纹投影轮廓测量系统,该系统能够执行花丝工具几何形状的检查,例如在大块金属成形工艺的内部成形机中,齿尖半径为0.2 mm的齿轮元件。直径为2 mm的紧凑型梯度折射率棒状透镜可实现传感器头的紧凑设计,该传感器头通过直径为1.7 mm的柔性高分辨率图像光纤连接至基本单元。基本单元装有一个基于DMD的灵活LED投影仪,该投影仪针对光纤耦合和CMOS摄像头传感器进行了优化。该系统每秒能够捕获多达150种灰度图案以及来自多次曝光的高动态范围图像。由于光纤串扰和图像光纤中的漏光,特别是在捕获反射率或表面角度变化很大的工业表面的3D数据时,信号质量会受到影响。提出了一种算法,该算法可自适应地掩盖部分图案,以通过多次曝光来减少这些影响。根据来自初始捕获的不同参数(例如强度和表面梯度),自动定义有效表面积的蒙版。在第二步中,使用系统的数学模型将蒙版重新投影到投影仪坐标。这种方法能够减少凹面物体上的像素间串扰和物体间反射,同时保持不到5 s的测量时间。

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