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Real-time high-speed motion blur compensation method using galvanometer mirror for shape sensing of microfabricated objects

机译:使用电流计镜的实时高速运动模糊补偿方法,用于微制造物体的形状传感

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In this paper, motion-blur compensation method for micro fabricated objects using a galvanometer mirror with back-and-forth rotation is proposed. Motion-blur compensation is expected to extend exposure time without motion blur because longer exposure time can decrease the intensity of illumination to avoid shape expansion of a target object by heat of illumination. Dealing with this demand, a galvanometer mirror is installed between the target and a 2D high-speed camera, and controls the optical axis of the camera to follow the moving target. Each continuous images are taken during the motion of the stage, and finally taken images are integrated into one image by patching for detecting fabrication error using image processing. The experimental system that consists of a high-speed camera, a galvanometer mirror and a high-precision stage is developed and a 20 mm/s moving drilled silicon nitride sheet having holes of about 40 μm in diameter are lattice-shaped at a pitch of 60 μm is captured without motion blur by using this system. Comparing captured images with still images in diameter, roundness and curvature of the each holes, the effectiveness of this system is validated.
机译:在本文中,提出了使用具有前后旋转的电流计镜的微制造物体的运动模糊补偿方法。预计运动模糊补偿将延长曝光时间而无运动模糊,因为较长的曝光时间可以降低照明强度,以避免通过照明的热量膨胀目标物体的膨胀。处理这种需求,电流计镜在目标和2D高速摄像机之间安装,并控制相机的光轴以遵循移动目标。在阶段的运动期间拍摄每个连续图像,并且通过修补使用图像处理来通过修补来将图像集成到一个图像中。它由一个高速照相机,检流计反射镜和高精度的阶段的实验系统的开发和一个20毫米/秒移动具有在直径大约为40微米的通路孔钻出氮化硅片在的间距的格子状使用该系统,在没有运动模糊的情况下捕获60μm。将捕获的图像与直径,圆度和每个孔的曲率的静止图像进行比较,验证了该系统的有效性。

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