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Algorithm of locating the sphere center imaging point based on novel edge model and Zernike moments for vision measurement

机译:基于新颖边缘模型和Zernike矩定位的球形中心成像点的视觉测量算法

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摘要

High accuracy of locating the sphere center imaging points is crucial for the vision measurement system. This paper investigates the effect of projection projective model on extraction of the sphere center, upon which the sub-pixel edge-location algorithm based on the sphere projection model is proposed. The sphere center projection model is established by analysing the process of sphere imaging, and the sub-pixel edge-location algorithm consisted of the novel edge model and the improved Zernike moment computing is studied. The novel edge model based on the Erf (error function) is adopted for modelling the practical edge part, which obtains the edge distribution points with high precision. Then a closed-form solution of edge locating error compensation is calculated based on Zernike moments. Finally, the proposed method is verified via simulations and experiments. The relevant results show that the proposed method can accurately locate the sphere center imaging point, which further improves the precision and robustness of the vision measurement system.
机译:定位球中心成像点的高精度对于视觉测量系统至关重要。本文研究了投影突起模型对球体中心提取的影响,提出了基于球体投影模型的子像素边缘定位算法。通过分析球体成像的过程来建立球体中心投影模型,研究了由新颖的边缘模型和改进的Zernike时刻计算组成的子像素边缘位置算法。采用基于ERF(误差函数)的新型边缘模型来建模实用边缘部分,其获得高精度的边缘分布点。然后基于Zernike矩来计算边缘定位误差补偿的闭合形式解决方案。最后,通过模拟和实验验证所提出的方法。相关结果表明,该方法可以准确地定位球体中心成像点,这进一步提高了视觉测量系统的精度和鲁棒性。

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