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The Impact of Sunlight Conditions on the Consistency of Vegetation Indices in Croplands—Effective Usage of Vegetation Indices from Continuous Ground-Based Spectral Measurements

机译:阳光条件对农田植被指数一致性的影响-基于连续地基光谱测量的植被指数的有效利用

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A ground-based network of spectral observations is useful for ecosystem monitoring and validation of satellite data. However, these observations contain inherent uncertainties due to the change of sunlight conditions. This study investigated the impact of changing solar zenith angles and diffuse/direct light conditions on the consistency of vegetation indices (normalized difference vegetation index (NDVI) and green-red vegetation index (GRVI)) derived from ground-based spectral measurements in three different types of cropland (paddy field, upland field, cultivated grassland) in Japan. In general, the vegetation indices decreased with decreasing solar zenith angle. This response was affected significantly by the growth stage and diffuse/direct light conditions. The decreasing response of the NDVI to the decreasing solar zenith angle was high during the middle growth stage (0.4 NDVI 0.8). On the other hand, a similar response of the GRVI was evident except in the early growth stage (GRVI 0). The response of vegetation indices to the solar zenith angle was evident under clear sky conditions but almost negligible under cloudy sky conditions. At large solar zenith angles, neither the NDVI nor the GRVI were affected by diffuse/direct light conditions in any growth stage. These experimental results were supported well by the results of simulations based on a physically-based canopy reflectance model (PROSAIL). Systematic selection of the data from continuous diurnal spectral measurements in consideration of the solar light conditions would be effective for accurate and consistent assessment of the canopy structure and functioning.
机译:一个基于地面的光谱观测网络对于生态系统监测和卫星数据验证很有用。但是,由于阳光条件的变化,这些观察结果具有内在的不确定性。这项研究调查了三种不同的地面光谱测量得出的太阳天顶角和漫反射/直射光条件对植被指数一致性的影响(归一化植被指数(NDVI)和绿红色植被指数(GRVI))日本的耕地类型(稻田,高地,耕地)。通常,植被指数随着太阳天顶角的减小而减小。该反应受生长阶段和漫射/直射光条件的影响很大。在中生阶段,NDVI对太阳天顶角减小的响应降低很高(0.4

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