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Improving the accuracy of image co-registration in InSAR.

机译:提高InSAR中图像共配准的准确性。

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摘要

Synthetic aperture radar interferomery (InSAR) has gained attention in many fields because of its accuracy, convenience and efficiency. It has been demonstrated to be a potential tool for generating digital elevation models (DEM).; But many critical factors affect the robustness and accuracy of InSAR technology and limit its applications and development. This project is devoted to improving the accuracy of DEM generated by InSAR. Some factors influencing on the accuracy of SAR image co-registration have been systematically investigated.; Firstly, a quantitative measure for the quality of interferogram is proposed based on the sum of phase difference (SPD). The simulation results show the variation of the quality of an interferogram can be correctly reflected by the value of SPD.; When lacking of well-defined tiepoint for co-registration, the tiepoints are selected in grid form. In order to understand the effects of tiepoint interval on the reliability of co-registration, a series of experiments with different grid sizes have been carried out. The effects of the tiepoint interval and the accuracy of DEM were systematically investigated. The tiepoint interval is not a very sensitive parameter. However, a tiepoint interval with around 200*30 pixels is an appropriate grid size for tiepoint, which can make results more reliable.; If feature points are available, more accurate co-registration can be achieved. To extract the feature points, a method is proposed. The extraction of such points is based on the wavelet gradient modulus maximum after decomposing SAR images. The feature points extracted by wavelet and the tiepoints selected in grid form should be combined together for a reliable co-registration. The experimental results show that the reliability of co-registration was improved by the method. Specially, the accuracy of DEM was improved by 16%∼35%.; The window size is a factor to be considered for tiepoint matching in co-registration. Optimum window size can be determined based on the autocorrelation of SAR image, which indicates the degree of similarity between pixels in an image. With wavelet, the autocorrelation coefficient can be decomposed into different frequency components. By analyzing the variation of amplitude, the optimum window size can be determined. The experimental results show that it is a reliable method to determine the optimum window size by decomposing autocorrelation coefficient with wavelet.; Finally, a system for automated SAR image co-registration is implemented. It fuses all techniques developed in this project systematically and efficiently for enhancing the accuracy of co-registration.
机译:合成孔径雷达干涉仪(InSAR)由于其准确性,便利性和效率而受到了许多领域的关注。已经证明它是生成数字高程模型(DEM)的潜在工具。但是,许多关键因素影响InSAR技术的健壮性和准确性,并限制了其应用和开发。该项目致力于提高InSAR生成的DEM的准确性。已经系统地研究了影响SAR图像共配准精度的一些因素。首先,基于相位差之和(SPD),提出了一种干涉图质量的定量测量方法。仿真结果表明,SPD值可以正确反映干涉图质量的变化。当缺少用于共注册的定义明确的联系点时,将以网格形式选择联系点。为了了解联系点间隔对共注册可靠性的影响,已进行了一系列不同网格尺寸的实验。系统地研究了联络点间隔和DEM准确性的影响。联络点间隔不是一个非常敏感的参数。但是,大约200 * 30像素的联络点间隔是联络点的合适网格大小,可以使结果更可靠。如果可以使用特征点,则可以实现更准确的共同注册。为了提取特征点,提出了一种方法。此类点的提取基于分解SAR图像后的最大小波梯度模量。小波提取的特征点和以网格形式选择的联系点应合并在一起以实现可靠的共配准。实验结果表明,该方法提高了共注册的可靠性。特别地,DEM的精度提高了16%〜35%。窗口大小是共同注册中联系点匹配要考虑的一个因素。可以基于SAR图像的自相关来确定最佳窗口大小,该自相关表示SAR图像中像素之间的相似度。利用小波,自相关系数可以分解为不同的频率分量。通过分析幅度的变化,可以确定最佳窗口大小。实验结果表明,利用小波分解自相关系数是确定最优窗口尺寸的可靠方法。最后,实现了一种用于自动SAR图像共配准的系统。它系统有效地融合了该项目中开发的所有技术,以提高共注册的准确性。

著录项

  • 作者

    Zou, Weibao.;

  • 作者单位

    Hong Kong Polytechnic University (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic University (People's Republic of China).;
  • 学科 Geodesy.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大地测量学;遥感技术;
  • 关键词

  • 入库时间 2022-08-17 11:42:32

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