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ALGORITHMS FOR ON-LINE MONITORING OF COMPONENTS IN AN OPTICAL TWEEZERS-BASED ASSEMBLY CELL

机译:基于光学镊子的组装单元中的组件在线监测的算法

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Optical tweezers have emerged as a powerful tool for micro and nanomanipulation. Using optical tweezers to perform automated assembly requires on-line monitoring of components in the assembly workspace. This paper presents algorithms for estimating positions and orientations of microscale and nanoscale components in the 3-Dimensional assembly workspace. Algorithms presented in this paper use images obtained by optical section microscopy. The images are first segmented to locate areas of interest and then image gradient information from the areas of interest is used to generate probable locations and orientations of components in the XY-plane. Finally, signature curves are computed and utilized to obtain component locations and orientations in 3-D space. We have tested these algorithms with silica micro-spheres as well as metallic nanowires. We believe that the algorithms described in this paper will provide the foundation for realizing automated assembly operations in optical tweezers-based assembly cells.
机译:光学镊子已成为微型和纳米尺寸的强大工具。使用光学镊子执行自动组件需要在组装工作空间中的组件在线监控。本文介绍了用于在三维组装工作空间中估算微观和纳米级组件的位置和方向的算法。本文中呈现的算法使用通过光学截面显微镜获得的图像。首先将图像分段为定位感兴趣的区域,然后从感兴趣区域的图像梯度信息用于生成XY平面中的组件的可能位置和方向。最后,计算签名曲线并利用以获得三维空间中的组件位置和方向。我们已经用二氧化硅微球以及金属纳米线测试了这些算法。我们认为本文中描述的算法将为实现光学镊子的组装细胞中的自动组装操作提供基础。

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