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Parallax adjustment algorithm based on Susan-Zernike moments

机译:基于Susan-Zernike矩的视差调整算法

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Precise parallax detection through definition evaluation and the adjustment of the assembly position of the objective lens or the reticle are important means of eliminating the parallax of the telescope system, so that the imaging screen and the reticle are clearly focused at the same time. An adaptive definition evaluation function based on Susan-Zernike moments is proposed. First, the image is preprocessed by the Susan operator to find the potential boundary edge. Then, the Zernike moments operator is used to determine the exact region of the reticle line with sub-pixel accuracy. The image definition is evaluated only in this related area. The evaluation function consists of the gradient difference calculated by the Zernike moments operator. By adjusting the assembly position of the objective lens, the imaging screen and the reticle will be simultaneously in the state of maximum definition, so the parallax can be eliminated. The experimental results show that the definition evaluation function proposed in this paper has the advantages of good focusing performance, strong anti-interference ability compared with the other commonly used definition evaluation functions.
机译:通过清晰度评估进行精确视差检测以及调整物镜或标线片的装配位置是消除望远镜系统视差的重要手段,从而使成像屏幕和标线片清晰地同时聚焦。提出了一种基于Susan-Zernike矩的自适应清晰度评估函数。首先,由Susan操作员对图像进行预处理,以找到潜在的边界边缘。然后,使用Zernike矩算子以亚像素精度确定标线的确切区域。仅在此相关区域中评估图像清晰度。评估函数由Zernike矩算子计算出的梯度差组成。通过调节物镜的组装位置,成像屏幕和掩模版将同时处于最大清晰度状态,因此可以消除视差。实验结果表明,与其他常用的清晰度评价函数相比,本文提出的清晰度评价函数具有聚焦性能好,抗干扰能力强的优点。

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