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Experiments with an automated visual inspection system

机译:使用自动外观检查系统进行实验

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Experiments were performed with the JPL automated visual inspection system that detects potential flaws in the exterior of the Space Station by comparing reference and comparison images. The imaging system consists of cameras, strobe lights, an image processor, and a simulated sunlight source. Two color CCD cameras with electronic shuttering (Toshiba IK-M41A) and two strobe lights (EG&G MVS5000) are mounted on the end of a seven DOF Robotics Research Corporation arm as part of an integrated multi-sensor end effector. The entire robot arm is mounted on a l DOF mobile rail platform. Three main components evaluated are: 1) image-differencing-based ambient light compensation, 2) electronic-shuttering-based ambient light rejection, and 3) image registration. The results indicate that the ambient light compensation algorithm yields 0.01% to 0.4% false flaws with lab-simulated sunlight changing front 25%; to 100% intensity. Electronic shuttering with synchronized strobe lighting reduces false flaws considerably. As exposure shortens from 1/60 (fully open) to 1/1000 second, false flaws decrease 100-fold from 0.4% to 0.004%. The current registration algorithm corrects a very limited range of misregistration, correcting approximately 4 pixels of pure translational shifts over the inspection surface. A more robust image registration algorithm that can correct both translational and rotational shifts over 10 pixels misregistration would be highly desirable.
机译:使用JPL自动化外观检查系统进行的实验通过比较参考图像和比较图像来检测空间站外部的潜在缺陷。成像系统由照相机,频闪灯,图像处理器和模拟的阳光源组成。作为集成式多传感器末端执行器的一部分,在七个DOF Robotics Research Corporation臂的末端安装了两个带电子快门的彩色CCD摄像机(Toshiba IK-M41A)和两个频闪灯(EG&G MVS5000)。整个机械臂都安装在1自由度移动导轨平台上。评估的三个主要组成部分是:1)基于图像差分的环境光补偿; 2)基于电子快门的环境光抑制;以及3)图像配准。结果表明,环境光补偿算法产生0.01%到0.4%的伪缺陷,而实验室模拟的日光变化为25%;达到100%的强度。带有同步频闪灯的电子百叶窗大大减少了假瑕疵。随着曝光时间从1/60(完全打开)缩短到1/1000秒,虚假缺陷从0.4%减少到0.004%,减少了100倍。当前的套准算法校正了极少的套准范围,校正了检查表面上大约4个像素的纯平移。非常需要能够在10个像素配准上校正平移和旋转移位的更鲁棒的图像配准算法。

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