Minimización de los efectos atmosféricos en el índice espectral de la vegetación IVIS

IF 0.3 Q4 AGRONOMY Terra Latinoamericana Pub Date : 2018-01-22 DOI:10.28940/TERRA.V36I1.230
Fernando Paz Pellat
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Abstract

It is essential to minimize atmospheric effects on spectral information of remote sensors from space platforms to avoid under estimation of biophysical variables associated with satellite image data. In this paper, a generic algorithm was developed, based on sound theoretical arguments, to analyze time series ISVI spectral vegetation index (vegetation index based on iso-soil curves), thus avoiding the problems associated with the classic design of vegetation indices, where the spectral signal saturates quickly. The results, when applying the algorithm in pixel time series of AVHRR satellite images, showed that reduction and standardization of atmospheric effects in the ISVI was achieved. Using ISVI maximum values in time series (temporal window), a reasonable approximation to atmospheric conditions with minimum or standardized effects was obtained. In conclusion, although the scheme developed failed to eliminate the atmospheric effect on ISVI entirely, it was reduced to a minimum. The algorithm developed was simple enough for operational use, with regard to atmospheric correction methods using radiative model inversions.
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尽量减少大气对IVIS植被光谱指数的影响
必须尽量减少大气对空间平台遥感器光谱信息的影响,以避免低估与卫星图像数据相关的生物物理变量。本文基于良好的理论论证,开发了一种通用算法,用于分析时间序列ISVI光谱植被指数(基于等土曲线的植被指数),从而避免了传统植被指数设计中光谱信号迅速饱和的问题。将该算法应用于AVHRR像元时间序列的结果表明,该算法实现了ISVI大气效应的降低和标准化。利用时间序列(时间窗)的ISVI最大值,得到了具有最小效应或标准化效应的大气条件的合理近似值。综上所述,虽然所制定的方案未能完全消除大气对ISVI的影响,但它已减少到最低限度。对于使用辐射模式反演的大气校正方法,所开发的算法足够简单,可用于操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Terra Latinoamericana
Terra Latinoamericana Environmental Science-Ecology
CiteScore
1.10
自引率
0.00%
发文量
49
审稿时长
16 weeks
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