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An exploration of thresholds in retinex theory towards digital image processing of remotely sensed imagery.

机译:对retinex理论中的阈值的探索,该阈值用于遥感图像的数字图像处理。

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摘要

Optical remote sensing employs radiometric corrections to obtain measures of surface reflectance. Depending upon the particular application, these procedures may require intensive image processing and the specification of many external input parameters. This study uses principles derived from human colour vision research to help design new radiometric correction procedures that are simple, image-based, and perform reliably for a variety of imaging conditions.; The research is based on Edwin Land's retinex theory. Land used decision rules, or thresholding procedures, in an attempt to restore relative reflectance from scenes under conditions of varying electromagnetic flux (i.e. , due to uneven illumination). Several algorithms, derived from retinex theory, were designed such that they differed in the decision rules used to distinguish reflectance changes from illumination changes in test images. Global threshold procedures were employed in two of the algorithms and a third was based on locally adaptive thresholds derived from measures of image texture. Different images, ranging from simple artificial images to real world scenes, were used to test the algorithms' performance.; The global algorithms succeeded in the removal of uneven illumination with artificial images. The same algorithms were then tested on remotely sensed images exhibiting various degrees of effects analogous to uneven illumination. The uneven illumination effects remained in the images after processing. It was found that the global algorithms had difficulty coping with the presence of image texture. Local texture differences rendered the global thresholding procedures ineffective. This research demonstrates that locally based threshold adjustment techniques are superior in dealing with texture than the global thresholding Land employed.; Decision rules as devised by Land are too simple for real world settings, because they do not consider image texture. A new conceptual framework for retinex algorithms, based on locally adaptive thresholding, is hypothesized.
机译:光学遥感采用辐射校正来获取表面反射率的度量。根据特定的应用,这些过程可能需要密集的图像处理以及许多外部输入参数的规范。这项研究使用了人类彩色视觉研究的原理来帮助设计简单,基于图像并且在各种成像条件下都能可靠执行的新的辐射校正程序。该研究基于Edwin Land的retinex理论。土地使用决策规则或阈值处理程序,以尝试在变化的电磁通量(,由于光照不均匀)的情况下恢复场景的相对反射率。设计了几种源自retinex理论的算法,以使它们在用于区分反射率变化与测试图像中照明变化的决策规则方面有所不同。在两种算法中采用了全局阈值程序,第三种算法是基于从图像纹理测量得出的局部自适应阈值。从简单的人造图像到现实世界场景,使用了不同的图像来测试算法的性能。全局算法成功地消除了人造图像的不均匀照明。然后,对表现出与不均匀照明类似程度的不同程度影响的遥感图像测试相同的算法。处理后,不均匀的照明效果保留在图像中。发现全局算法难以应付图像纹理的存在。局部纹理差异使全局阈值处理程序无效。这项研究表明,基于局部的阈值调整技术在处理纹理方面优于采用的全局阈值化土地。 Land设计的决策规则对于现实环境而言太简单了,因为它们没有考虑图像纹理。假设基于局部自适应阈值的retinex算法的新概念框架。

著录项

  • 作者

    Bach, Katja Christine.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Physical Geography.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然地理学;遥感技术;
  • 关键词

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