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首页> 外文期刊>Remote Sensing >Comparison of the Continuity of Vegetation Indices Derived from Landsat 8 OLI and Landsat 7 ETM+ Data among Different Vegetation Types
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Comparison of the Continuity of Vegetation Indices Derived from Landsat 8 OLI and Landsat 7 ETM+ Data among Different Vegetation Types

机译:不同植被类型的Landsat 8 OLI和Landsat 7 ETM +数据得出的植被指数的连续性比较

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摘要

Landsat 8, the most recently launched satellite of the series, promises to maintain the continuity of Landsat 7. However, in addition to subtle differences in sensor characteristics and vegetation index (VI) generation algorithms, VIs respond differently to the seasonality of the various types of vegetation cover. The purpose of this study was to elucidate the effects of these variations on VIs between Operational Land Imager (OLI) and Enhanced Thematic Mapper Plus (ETM+). Ground spectral data for vegetation were used to simulate the Landsat at-senor broadband reflectance, with consideration of sensor band-pass differences. Three band-geometric VIs (Normalized Difference Vegetation Index (NDVI), Soil-Adjusted Vegetation Index (SAVI), Enhanced Vegetation Index (EVI)) and two band-transformation VIs (Vegetation Index based on the Universal Pattern Decomposition method (VIUPD), Tasseled Cap Transformation Greenness (TCG)) were tested to evaluate the performance of various VI generation algorithms in relation to multi-sensor continuity. Six vegetation types were included to evaluate the continuity in different vegetation types. Four pairs of data during four seasons were selected to evaluate continuity with respect to seasonal variation. The simulated data showed that OLI largely inherits the band-pass characteristics of ETM+. Overall, the continuity of band-transformation derived VIs was higher than band-geometry derived VIs. VI continuity was higher in the three forest types and the shrubs in the relatively rapid growth periods of summer and autumn, but lower for the other two non-forest types (grassland and crops) during the same periods.
机译:Landsat 8是该系列最新发射的卫星,有望保持Landsat 7的连续性。但是,除了传感器特性和植被指数(VI)生成算法的细微差异外,VI对各种类型的季节性也有不同的响应植被覆盖。本研究的目的是阐明这些变化对作战陆地成像仪(OLI)与增强型专题制图仪增强版(ETM +)之间VI的影响。考虑到传感器带通差异,将植被的地面光谱数据用于模拟Landsat在传感器的宽带反射率。三个带状VI(归一化植被指数(NDVI),土壤调整植被指数(SAVI),增强型植被指数(EVI))和两个带状变换VI(基于通用模式分解方法的植被指数(VIUPD)),测试了流苏帽转换绿色度(TCG),以评估与多传感器连续性相关的各种VI生成算法的性能。包括六种植被类型以评估不同植被类型的连续性。选择四个季节中的四对数据以评估季节性变化的连续性。仿真数据表明,OLI在很大程度上继承了ETM +的带通特性。总体而言,基于谱带变换的VI的连续性高于基于谱带几何的VI。在夏季和秋季相对较快的生长时期,VI的连续性在三种森林类型和灌木中较高,但在同一时期,对于其他两种非森林类型(草地和农作物),VI的连续性较低。

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