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Research of Sub-pixel Sub-division Location Algorithm for Spot Center of Digital Aerial Survey Camera Image

机译:数字航测相机图像点中心的亚像素细分定位算法研究

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摘要

So far, the geometric laboratory calibration system of optical aerial survey camera has been well established, while there is not a perfect system for digital aerial survey camera and the calibration of digital camera has not been included in the metrological verification system. In order to make the photogrammetry project rule-based, it's imperative to establish geometric laboratory calibration system of digital survey camera. Exact measuring angle method is the most common method to calibrate the camera in lab. The sub-pixel sub-division location of spot center for point-source image of digital camera is one of the key techniques to calibrate the camera based on the exact measuring angle method in lab. A novel location algorithm is proposed on account of the realities of the lab system. First, the Gauss filter is introduced to reduce the noise from the stray light and so on. Then the integration of iterative threshold segmentation and seed region growing is adopted to identify the general location of the spot. Thirdly, using the bilinear interpolation, the pixels used to estimate the location are increased. Finally, we use the proposed improved moment method to determinate the precise centroid location of the digital image. Experimental results show that the spots are identified with 93 percent accuracy and the centroid accuracy is superior to 1/40 of a pixel and improves about 2 to 4 times than other algorithms, which indicates that the proposed method is effective, convenient and precision.
机译:到目前为止,光学航空摄影机的几何实验室校准系统已经很好地建立起来,而数字航空摄影机还没有一个完善的系统,并且数码相机的校准还没有包括在计量验证系统中。为了使摄影测量项目基于规则,必须建立数字测量相机的几何实验室标定系统。精确的测量角度方法是在实验室中校准摄像机的最常用方法。数码相机点源图像点中心的亚像素细分位置是实验室中基于精确测量角度法校准相机的关键技术之一。针对实验室系统的实际情况,提出了一种新颖的定位算法。首先,引入高斯滤波器以减少来自杂散光等的噪声。然后采用迭代阈值分割和种子区域生长的集成来识别斑点的大致位置。第三,使用双线性插值,增加了用于估计位置的像素。最后,我们使用提出的改进矩量法来确定数字图像的精确质心位置。实验结果表明,该算法能识别出斑点,准确率达93%,质心精度优于其他像素的1/40,比其他算法提高了约2-4倍,表明该方法有效,方便,准确。

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