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An Improved Structured Light Inspection of Specular Surfaces Based on Quaternary Coding

机译:基于四元编码的改进的镜面结构光检测。

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Structured light techniques with binary coding are practical to inspect the specular surfaces. The structured light approaches use a scanned array of point sources and images of the resulting reflected highlights to compute local surface orientation. Binary coding scheme is the classic scheme for efficiently coding the light sources. This paper proposes a novel quaternary coding scheme which is much more efficient than the classic binary coding scheme. In this scheme, polychromatic light sources are utilized and coded in quaternary scheme. Our experimental system is described in detail. The problem caused by the polychromatic light sources is discussed too. To solve the problem, we drew lesson from the erosion operator from the Mathematical Morphology and designed an effective algorithm. The experiment results show the new quaternary coding scheme not only keeps a very high accuracy, but also greatly improves the efficiency of the inspection of specular surface.
机译:具有二进制编码的结构光技术可用于检查镜面。结构化光方法使用点光源的扫描阵列和所得反射高光的图像来计算局部表面方向。二进制编码方案是有效编码光源的经典方案。本文提出了一种新颖的四进制编码方案,该方案比经典的二进制编码方案有效得多。在该方案中,多色光源被利用并以四元方案编码。我们的实验系统已详细介绍。也讨论了由多色光源引起的问题。为了解决该问题,我们从“数学形态学”的腐蚀算子中吸取了教训,并设计了一种有效的算法。实验结果表明,新的四元编码方案不仅保持了很高的精度,而且大大提高了镜面检测的效率。

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