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Spatial surface prior information reflectance estimation (SPIRE) algorithms

机译:空间表面先验信息反射率估计(SPIRE)算法

摘要

A new class of algorithms has been developed to estimate spectral reflectance in remote sensing imagery. These algorithms are called Surface Prior Information Reflectance Estimation (SPIRE) algorithms and estimate surface spectral reflectance using prior spatial and spectral information about the surface reflectance. This paper describes SPIRE algorithms that employ spatial processing of single channel data to estimate local changes in spectral reflectance under spatially and spectrally varying multiplicative and additive noise caused by variations in illumination and atmospheric effects. Rather than modeling the physics of the atmosphere and illumination (using a physics-based code such as ATREM), or using ground truth spectra at known locations to compensate for these effects (using the Empirical Line Method), prior information about the low spatial frequency content of the scene in each spectral channel is used instead. HYDICE VNIR-SWIR hyperspectral data were used to compare the performance of SPIRE, ATREM, and ELM atmospheric compensation algorithms. The Spatial SPIRE algorithm performance was found to be nearly identical to the ELM ground-truth based results, while Spatial SPIRE performed better than ATREM overall, and significantly better under high clouds and haze.
机译:已经开发出一类新算法来估计遥感影像中的光谱反射率。这些算法称为表面先验信息反射率估计(SPIRE)算法,并使用有关表面反射率的先验空间和光谱信息来估计表面光谱反射率。本文介绍了SPIRE算法,该算法采用单通道数据的空间处理来估计在光照和大气效应变化引起的空间和频谱变化的乘性和加性噪声作用下,光谱反射率的局部变化。关于低空间频率的先验信息,不是对大气和光照的物理学建模(使用基于物理学的代码,例如ATREM),也不是在已知位置使用地面真实光谱来补偿这些影响(使用经验线法)。而是使用每个光谱通道中场景的内容。 HYDICE VNIR-SWIR高光谱数据用于比较SPIRE,ATREM和ELM大气补偿算法的性能。发现Spatial SPIRE算法的性能几乎与基于ELM的真实结果相同,而Spatial SPIRE的总体性能优于ATREM,在高云和薄雾条件下的性能明显更好。

著录项

  • 公开/公告号US7260242B2

    专利类型

  • 公开/公告日2007-08-21

    原文格式PDF

  • 申请/专利权人 HERBERT E. M. VIGGH;

    申请/专利号US20030642809

  • 发明设计人 HERBERT E. M. VIGGH;

    申请日2003-08-15

  • 分类号G06K9/40;

  • 国家 US

  • 入库时间 2022-08-21 21:02:11

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