首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >A Forward/backward Principal Component Analysis Of Landsat-7 Etm+ Data To Enhance The Spectral Signal Of Burnt Surfaces
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A Forward/backward Principal Component Analysis Of Landsat-7 Etm+ Data To Enhance The Spectral Signal Of Burnt Surfaces

机译:Landsat-7 Etm +数据的前向/后向主成分分析,以增强燃烧表面的光谱信号

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摘要

In this paper, principal component analysis (PCA), a dimensionality reduction method, has been applied successfully as an image enhancement technique to improve the spectral signal of burnt surfaces. Forward/backward PCA (F/B PCA) and image differencing, which the proposed method consists of, creates a new spectral space that preserves the original spectral patterns while enhancing particular structures of the original satellite data. Burnt surfaces constitute a spectrally enhanced feature after selective removal of spectral information from the original Landsat-7 Enhanced Thematic Mapper data. Improvement of the spectral separability of burnt surfaces is most evident in spectral channels ETM+4 and ETM+7, where burnt surfaces already compose distinct spectral objects, and channels ETM+2 and ETM+5. This improvement is reasonable since the third PC axis, which is not considered in the back-transformation, is composed mainly of the spectral information in these channels. Another benefit of the technique is a reduction of interband correlation in the satellite data. No clear differences between the standardized and non-standardized F/B PCA were identified to recommend the use of one over the other. Both methods show advances in certain aspects. Finally, an increase of the separability value between burnt areas and dry vegetated areas from 0.473 to 1.06 and 1.31 was obtained with the use of the standardized and non-standardized F/B PCA, respectively.
机译:在本文中,降维方法主成分分析(PCA)作为一种图像增强技术已成功地应用于改善烧伤表面的光谱信号。所提出的方法包括的前向/后向PCA(F / B PCA)和图像差分,创建了一个新的光谱空间,该空间保留了原始光谱图样,同时增强了原始卫星数据的特定结构。从原始Landsat-7增强型专题制图仪数据中选择性删除光谱信息后,烧过的表面构成了光谱增强的特征。在光谱通道ETM + 4和ETM + 7中,燃烧表面的光谱可分离性的改善最为明显,其中燃烧表面已经组成了不同的光谱对象,而通道ETM + 2和ETM + 5。这种改进是合理的,因为在逆变换中未考虑的第三PC轴主要由这些通道中的频谱信息组成。该技术的另一个好处是减少了卫星数据中的带间相关性。没有发现标准化F / B PCA与非标准化F / B PCA之间存在明显差异,因此建议不使用它们。两种方法在某些方面均显示出进步。最后,分别使用标准化和非标准化的F / B PCA,可将燃烧区和干燥植被区之间的可分离性值从0.473分别提高到1.06和1.31。

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