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Leaf area index determination of wheat indicating heterogeneous soilconditions

机译:叶面积指数测定小麦表明异质土壤条件

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The objective of this study, which is part of the project "crop drought stress monitoring by remote sensing" (DROSMON), is to assess the potential of hyperspectral imagery to determine drought stress of crops due to heterogeneous soil composition by estimating the leaf area index (LAI). LAI, which characterizes the actual status of the crops and therefore the potential yield, may be seen as the most important parameter indicating medium term drought stress. As a result of former river meanders, the soils in the Marchfeld region are interrupted by bands of lighter soil. The higher content of sand in the bands leads to a lower water storage capacity and consequently to a decrease in plant growth. An airborne HyMap image was acquired in June 2005 during anthesis stage of wheat. Inversion of a radiative transfer model by means of a look-up-table (LUT) approach was performed to retrieve LAI and other canopy parameters from wheat canopy reflectance. Additionally, the LAI was estimated by establishing empirical relationships between LAI and spectral indices (MSAVI, TVI and MTVI2). Both ways of LAI estimation showed a reasonable correlation to final yield measurements obtained one month after the image data acquisition. However, there was a slightly better agreement of model inversion results. The results suggest the applicability of hyperspectral imagery to map potential drought risk of (wheat) fields.
机译:这项研究的目的是项目的一部分“遥感”(recosmon)(Drosmon),是评估高光谱图像的潜力,以通过估计叶面积指数来确定由于异质土壤组合物导致的作物的干旱胁迫(莱)。赖丽表征作物的实际状态,因此潜在的产量,可以被视为表明中期干旱胁迫的最重要参数。由于前河蜿蜒而言,Marchfeld地区的土壤被较轻的土壤中断。频段中的砂含量较高导致较低的储水能力,从而降低植物生长。在一个小麦的开花阶段,2005年6月收购了空中Hymap图像。通过查找 - 上表(LUT)方法进行辐射转移模型的反演,以检索小麦冠层反射率的赖和其他树冠参数。此外,通过建立赖斯和光谱指数(MSAVI,TVI和MTVI2)之间的实证关系估计。赖估计的两种方式显示了与图像数据采集后一个月获得的最终产量测量的合理相关性。但是,模型反转结果略有更好地吻合。结果表明,高光谱图像的适用性地图映射(小麦)场的潜在干旱风险。

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