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Reducing distortions caused by the welding arc in a laser stripe sensor system for automated seam tracking

机译:减少由焊接弧引起的焊接弧形在激光条带系统中引起的自动接缝跟踪

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Although laser vision systems for the automation of complicated arc welding processes have been available as commercial products since the mid 1980s, industrial breakthrough has not yet taken place. Up to now unreliability and high prices preventpotential users from investing in this innovative technology.The reliability and accuracy of triangulation based laser stripe sensors are significantly reduced by the characteristics of the open welding arc such as bright light, spatter and fumes that distort the sensor's camera signal. First steps to reduce theseimpacts are mechanical shielding, optical bandpass filters and increased laser power. The paper's first part discusses the results of experimental investigations carried out to quantify the efficiency of these physical measures. Although a significantreduction can be obtained, these physical measures do not eliminate all distortions caused by the welding arc. Therefore new algorithms to filter out the remaining distortions are discussed. Improvements are also quantified using experimental data.Finally new hardware platforms to realize these new algorithms are investigated. Powerful solutions such as parallel-DSP-boards or transputers should be avoided as they are too expensive. Therefore the suitability of conventional PC-processors and FPGAs(Field Programmable Gate Arrays) is investigated.
机译:虽然自20世纪80年代中期以来,用于自动化弧焊工艺的自动化的激光视觉系统已作为商业产品,但工业突破尚未发生。截至目前,不可靠性和高价格预防稳定用户投资这种创新技术。基于三角扫描的激光条纹传感器的可靠性和准确性通过亮光,飞溅和烟雾的开放式焊接电弧的特性显着降低了传感器相机的烟雾信号。减少减少扫描的第一步是机械屏蔽,光学带通滤波器和增加的激光功率。本文的第一部分讨论了进行实验调查的结果,以量化这些物理措施的效率。尽管可以获得明显的测量,但这些物理措施不会消除由焊接弧引起的所有扭曲。因此,讨论了用于过滤剩余扭曲的新算法。使用实验数据还可以进行改进。最后的新硬件平台实现了这些新算法。应避免强大的解决方案,如平行DSP板或转换器,因为它们太昂贵。因此,研究了传统的PC处理器和FPGA(现场可编程门阵列)的适用性。

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