Murakami Kenichi, Hayakawa Tomohiko, Ishikawa Masatoshi
Appl Opt. 2022 Jan 10;61(2):429-438. doi: 10.1364/AO.442987.
The recent growth in automation and microfabrication has led to a need for faster, more accurate inspections. This in turn requires fast and accurate image capture methods. A system has previously been proposed to obtain images without motion blur by controlling the line of sight to follow a moving object with a mirror, thereby decreasing inspection time. However, as this system follows only the line of sight, it corresponds only to the plane parallel to the direction of movement. Here, we propose a system for measuring non-planar surfaces by simultaneously controlling the line of sight and focus using a deformable mirror. In addition, the proposed system requires only one deformable mirror, whereas those from previous studies require multiple devices to control the line of sight and focus. Therefore, our proposed system can be downsized and applied to various measurement systems. We tested our system by measuring surface images of objects with curved and uneven surfaces under movement at 20 mm/s, at a distance of about 140 mm in front of the mirror. The system successfully obtained motion-blur-free, all-in-focus images. Moreover, we validated the effectiveness of the proposed system by comparing the captured images to those obtained using existing methods.
近年来,自动化和微纳制造技术的发展使得对更快、更精确检测的需求日益增长。这进而需要快速且准确的图像采集方法。此前曾提出一种系统,通过用镜子控制视线以跟随移动物体来获取无运动模糊的图像,从而减少检测时间。然而,由于该系统仅跟踪视线,它仅对应于与运动方向平行的平面。在此,我们提出一种通过使用可变形镜同时控制视线和焦点来测量非平面表面的系统。此外,所提出的系统仅需一个可变形镜,而先前研究中的系统需要多个设备来控制视线和焦点。因此,我们提出的系统可以小型化并应用于各种测量系统。我们通过在距离镜子前方约140毫米处,以20毫米/秒的速度移动下测量具有曲面和不平整表面的物体的表面图像来测试我们的系统。该系统成功获得了无运动模糊、全聚焦的图像。此外,我们通过将捕获的图像与使用现有方法获得的图像进行比较,验证了所提出系统的有效性。