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ON THE RELATION BETWEEN NDVI, FRACTIONAL VEGETATION COVER, AND LEAF AREA INDEX

机译:NDVI,分数植被覆盖和叶面积指数之间的关系

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摘要

We use a simple radiative transfer model with vegetation, soil, and atmospheric components to illustrate how the normalized difference vegetation index (NDVI), leaf are index (LAI), and fractional vegetation cover are dependent. In particular, we suggest that LAI and fractional vegetation cover may not be independent quantities, at least when the former is defined without regard to the presence of bare patches between plants, and that the customary variation of LAI with NDVI can be explained as resulting from a variation in fractional vegetation cover. The following points are made: i) Fractional vegetation cover and LAI are not entirely independent quantities, depending on how LAI is defined. Care must be taken in using LAI and fractional vegetation cover independently in a model because the former may partially take account of the latter; ii) A scaled NDVI taken between the limits of minimum (bare soil) and maximum fractional vegetation cover is insensitive to atmospheric correction for both clear and hazy conditions, at least for viewing angles less than about 20 degrees from nadir; iii) A simple relation between scaled NDVI and fractional vegetation cover, previously described in the literature, is further confirmed by the simulations; iv) The sensitive dependence of LAI on NDVI when the former is below a value of about 2-4 may be viewed as being due to the variation in the bare soil component. (C) Elsevier Science Inc., 1997. [References: 29]
机译:我们使用具有植被,土壤和大气成分的简单辐射传输模型来说明归一化差异植被指数(NDVI),叶片指数(LAI)和植被分数覆盖率如何相关。特别是,我们建议LAI和植被覆盖度可能不是独立的量,至少在定义前者时不考虑植物之间裸露斑块的存在,并且LAI与NDVI的惯常变化可以解释为植被覆盖率的变化。提出以下几点:i)部分植被覆盖度和LAI并非完全独立,取决于LAI的定义方式。在模型中必须谨慎使用LAI和部分植被覆盖度,因为前者可能会部分考虑后者。 ii)在晴朗和朦胧的条件下,至少对于距天底小于约20度的视角而言,在最小(裸土)和最大分数植被覆盖范围之间获取的缩放NDVI对大气校正不敏感; iii)模拟进一步证实了先前在文献中描述的缩放的NDVI与植被覆盖度之间的简单关系; iv)当前者低于大约2-4时,LAI对NDVI的敏感依赖性可能被认为是由于裸土成分的变化。 (C)Elsevier Science Inc.,1997年。[参考:29]

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