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An edge-based scale- and affine-invariant algorithm for remote sensing image registration

机译:基于边缘的尺度和仿射不变算法进行遥感图像配准

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摘要

For remote sensing image registration, we find that affine transformation is suitable to describe the mapping between images. Based on the scale-invariant feature transform (SIFT), affine-SIFT (ASIFT) is capable of detecting and matching scale- and affine-invariant features. Unlike the blob feature detected in SIFT and ASIFT, a scale-invariant edge-based matching operator is employed in our new method. To find the local features, we first extract edges with a multi-scale edge detector, then the distinctive features (we call these 'feature from edge' or FFE) with computed scale are detected, and finally a new matching scheme is introduced for image registration. The algorithm incorporates principal component analysis (PCA) to ease the computational burden, and its affine invariance is embedded by discrete sampling as ASIFT. We present our analysis based on multi-sensor, multi-temporal, and different viewpoint images. The operator shows the potential to become a robust alternative for point-feature-based registration of remote-sensing images as subpixel registration consistency is achieved. We also show that using the proposed edge-based scale- and affine-invariant algorithm (EBSA) results in a significant speedup and fewer false matching pairs compared to the original ASIFT operator.
机译:对于遥感图像配准,我们发现仿射变换适合描述图像之间的映射。基于尺度不变特征变换(SIFT),仿射SIFT(ASIFT)能够检测和匹配尺度不变和仿射不变特征。与SIFT和ASIFT中检测到的斑点特征不同,在我们的新方法中采用了基于比例不变边缘的匹配算子。为了找到局部特征,我们首先使用多尺度边缘检测器提取边缘,然后检测具有计算尺度的独特特征(我们称之为“边缘特征”或FFE),最后为图像引入新的匹配方案注册。该算法结合了主成分分析(PCA)来减轻计算负担,其仿射不变性通过ASIFT离散采样嵌入。我们提出基于多传感器,多时间和不同视点图像的分析。操作员显示出实现亚像素配准一致性后,有潜力成为基于点特征的遥感影像配准的强大替代方案。我们还显示,与原始ASIFT运算符相比,使用建议的基于边缘的尺度和仿射不变算法(EBSA)可以显着提高速度,并减少错误匹配对。

著录项

  • 来源
    《International journal of remote sensing》 |2013年第8期|2301-2326|共26页
  • 作者单位

    Key Laboratory of Precision Opto-Mechatronics Technology, Ministry of Education, School of Instrumental Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;

    Key Laboratory of Precision Opto-Mechatronics Technology, Ministry of Education, School of Instrumental Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;

    Key Laboratory of Precision Opto-Mechatronics Technology, Ministry of Education, School of Instrumental Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;

    Key Laboratory of Precision Opto-Mechatronics Technology, Ministry of Education, School of Instrumental Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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