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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >High precision Fast Line Detection of alignment and coupling for planar Optical Waveguide device
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High precision Fast Line Detection of alignment and coupling for planar Optical Waveguide device

机译:高精度快速线路检测平面光波导装置的对准和耦合

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摘要

Machine vision is widely used in alignment between planar optical waveguide chip and optical fiber array. Optical component edge detection is one of the key steps of machine vision in alignment. This paper has proposed a line detection algorithm based on the progressive probabilistic Hough transform (PPHT) and iteratively reweighted least squares (IRLS) algorithm for alignment between planar optical waveguide chip and optical fiber array. The experiment results show that the detection angle error is less than 0.005 degrees and the time consumption is less than 0.5 s through the proposed algorithm. Besides, it also can accurately fit optical component edge with some non-random factors. Therefore, the proposed new algorithm has the advantages of high precision, fast computing speed and good robustness, and it can successfully realize the high-precision fast line detection of optical component edge. (C) 2017 Elsevier GmbH. All rights reserved.
机译:机器视觉广泛用于平面光波导芯片和光纤阵列之间的对齐。 光学分量边缘检测是对准中机器视觉的关键步骤之一。 本文提出了一种基于逐行概率霍夫变换(PPHT)和迭代重新重量最小二乘(IRLS)算法的线路检测算法,用于对准平面光波导芯片和光纤阵列之间的对准。 实验结果表明,通过所提出的算法,检测角误差小于0.005度,时间消耗小于0.5秒。 此外,它还可以用一些非随机因子精确地拟合光学元件边缘。 因此,提出的新算法具有高精度,计算速度和良好稳健性的优点,可以成功实现光学元件边缘的高精度快线检测。 (c)2017年Elsevier GmbH。 版权所有。

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