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Seam Tracking with Adaptive Image Capture for Fine-tuning of a High Power Laser Welding Process

机译:具有自适应图像捕获的接缝跟踪,用于高功率激光焊接过程的微调

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This paper presents the development of methods for real-time fine-tuning of a high power laser welding process of thick steel by using a compact smart camera system. When performing welding in butt-joint configuration, the laser beam's location needs to be adjusted exactly according to the seam line in order to allow the injected energy to be absorbed uniformly into both steel sheets. In this paper, on-line extraction of seam parameters is targeted by taking advantage of a combination of dynamic image intensity compression, image segmentation with a focal-plane processor ASIC, and Hough transform on an associated FPGA. Additional filtering of Hough line candidates based on temporal windowing is further applied to reduce unrealistic frame-to-frame tracking variations. The proposed methods are implemented in Matlab by using image data captured with adaptive integration time. The simulations are performed in a hardware oriented way to allow real-time implementation of the algorithms on the smart camera system.
机译:本文通过使用紧凑型智能相机系统,介绍了厚钢大功率激光焊接过程的实时微调方法的开发。当在对接接头配置中执行焊接时,需要根据接缝线准确地调节激光束的位置,以便允许注入的能量均匀地吸收到两种钢板中。在本文中,通过利用动态图像强度压缩,与焦平面处理器ASIC的图像分割的组合,以及在相关联的FPGA上的Hough变换来实现接缝参数的在线提取。进一步应用基于时间窗口的Hough线候选的附加滤波以减少不现实的帧到帧跟踪变化。通过使用自适应积分时间捕获的图像数据,在MATLAB中实现了所提出的方法。模拟以硬件为导向的方式执行,以允许在智能摄像机系统上实时实现算法。

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