首页> 外文学位 >Recovery of ground-truth pixel information from airborne hyperspectral images.
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Recovery of ground-truth pixel information from airborne hyperspectral images.

机译:从机载高光谱图像中恢复地面真像素信息。

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摘要

Airborne hyperspectral imaging sensors provide hundreds of contiguous measurements in the visible through infrared region. The availability of data in the spectral dimension provides an opportunity to extract information related to material surfaces corresponding to a sensor pixel. The measured spectral radiance signal of a hyperspectral sensor is dependent on the material surfaces present within the pixel and the illumination and atmospheric conditions. We present nonlinear algorithms to estimate the reflectance spectrum and the orientation of ground material corresponding to a single material pure pixel. The algorithms are based on a nonlinear physics-based image formation model. We model the reflectance spectra using a low-dimensional subspace model. We model the common dependence of the illumination spectra and the path-scattered radiance on the viewing geometry and atmospheric condition by using a low dimensional coupled subspace. The algorithms exploit the fact that reflectance and illumination spectra typically lie in distinct subspaces. The algorithms involve solving constrained nonlinear optimization problems to estimate the material surface reflectance spectrum and it orientation. We extend the nonlinear algorithms to extract subpixel information for pixels with more than one material. It involves solving a constrained nonlinear optimization problem to estimate the pixel area fractions of different materials present within the pixel. We evaluated the utility of our algorithms on a large set of synthetic and real data.
机译:机载高光谱成像传感器可在可见光到红外区域提供数百个连续测量。光谱维度上数据的可用性为提取与对应于传感器像素的材料表面有关的信息提供了机会。高光谱传感器的测得光谱辐射信号取决于像素内存在的材料表面以及照明和大气条件。我们提出了非线性算法来估计反射光谱和对应于单个材料纯像素的地面材料的方向。该算法基于基于非线性物理学的图像形成模型。我们使用低维子空间模型对反射光谱进行建模。我们通过使用低维耦合子空间对照明光谱和路径散射辐射对观察几何形状和大气条件的一般依赖性进行建模。该算法利用了以下事实:反射率和照明光谱通常位于不同的子空间中。该算法涉及解决约束非线性优化问题,以估计材料表面反射光谱及其方向。我们扩展了非线性算法,以提取具有多种材料的像素的子像素信息。它涉及解决约束非线性优化问题,以估计像素内存在的不同材料的像素面积分数。我们评估了我们算法在大量合成和真实数据上的效用。

著录项

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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