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Robust Pattern Recognition of Three Dimensional Weld Pool Surface in Gas Tungsten Arc Welding

机译:气体钨弧焊三维焊接池表面的鲁棒模式识别

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Measuring weld pool surfaces in real-time is the foundation for intelligent welding that emulates welders' sensory capability. To image and measure the mirror-like weld pool surface under the strong arc radiation, a structured light laser pattern, i.e., a dot matrix, is projected onto the weld pool surface and its specular reflection is intercepted and imaged by an imaging plane placed with a distance from the arc. In this paper, a robust recognition scheme is proposed to identify the reflection pattern of the dot matrix in real-time. In particular, an adaptive segmentation algorithm is developed to identify the reflection pattern. Then a pattern recognition is proposed to determine the row and column number of each laser dot in the pattern such that the reflection pattern can be matched with the projection pattern. The identified reflection pattern can be used to reconstruct the 3D weld pool surface. Experiments with different welding conditions have been conducted, and the real-time performance of the proposed procedure, including the effectiveness, robustness and time cost, has bee verified.
机译:测量焊接池表面实时是智能焊接的基础,用于仿真焊工的感官能力。为了图像和测量强电弧辐射下的镜像焊接池表面,将结构化光激光图案,即点阵突出到焊接池表面上,并通过放置的成像平面截取和成像其镜面反射距弧的距离。在本文中,提出了一种鲁棒识别方案,以实时识别点阵的反射模式。特别地,开发了一种自适应分割算法以识别反射模式。然后,提出了一种模式识别来确定图案中的每个激光点的行和列数,使得反射图案可以与投影图案匹配。所识别的反射模式可用于重建3D焊接池表面。已经进行了不同焊接条件的实验,并且提出的程序的实时性能,包括蜜蜂验证的有效性,稳健性和时间成本。

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