摄影测量中参考点的高效检测与识别算法

Weimin Li, Gang Liu, Lichun Zhu, Xiaofeng Li, Yuhai Zhang, Siyu Shan
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引用次数: 7

摘要

在摄影测量中,为了满足对参考点检测与匹配的要求,提出了一种参考点自动检测与识别方法。这里使用的参考点是CCT(圆形编码目标),它由两部分组成:中心区域的圆形目标点和周围区域的圆形编码带。该方法首先提取图像的轮廓,然后根据轮廓的面积、两个轮廓区域之间的相关系数等一系列准则滤除图像中的噪声和干扰。其次,采用三次样条插值对CCT的中心轮廓区域进行处理;再次提取插值后的图像轮廓,然后进行最小二乘椭圆拟合,计算CCT的中心坐标。最后,利用CCT圆形编码带的角度信息得到编码值。实验结果表明,该算法可以将CCT的定位精度达到亚像素级。同时,即使图像背景复杂且充满干扰,识别精度也很高。此外,该算法具有较强的鲁棒性。此外,该算法运行速度快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient detection and recognition algorithm of reference points in photogrammetry
In photogrammetry, an approach of automatic detection and recognition on reference points have been proposed to meet the requirements on detection and matching of reference points. The reference points used here are the CCT(circular coded target), which compose of two parts: the round target point in central region and the circular encoding band in surrounding region. Firstly, the contours of image are extracted, after that noises and disturbances of the image are filtered out by means of a series of criteria, such as the area of the contours, the correlation coefficient between two regions of contours etc. Secondly, the cubic spline interpolation is adopted to process the central contour region of the CCT. The contours of the interpolated image are extracted again, then the least square ellipse fitting is performed to calculate the center coordinates of the CCT. Finally, the encoded value is obtained by the angle information from the circular encoding band of the CCT. From the experiment results, the location precision of the CCT can be achieved to sub-pixel level of the algorithm presented. Meanwhile the recognition accuracy is pretty high, even if the background of the image is complex and full of disturbances. In addition, the property of the algorithm is robust. Furthermore, the runtime of the algorithm is fast.
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