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Comparison of different approaches to retrieve plant water content of summer barley canopies from spectroradiometric measurements

机译:从分光辐射测量中检索夏季大麦檐篷植物水含量的不同方法的比较

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Different empirical and physically based methods were employed to derive the vegetation water content of summer barley plots (n=22) from spectroradiometric measurements (ASD FieldSpec II). Data were acquired for two different phenological stages in May and June 2005. For the empirical approaches, a ratio index using the reflectances at 1355 and 710 nm and the partial least squares regression provided the best estimation results (r2 > 0.90). Canopy radiative transfer modeling was performed by couplingthe PROSPECT and SAIL models. The retrieved values for Cw (equivalent leaf water thickness) x LAI were highly correlated (r2 = 0.86) with the measured canopy water contents, but showed distinct underestimates. For the vegetative phenological stage investigated in May, the PROSAIL results were very close to the measured water contents of the leaf fraction, but this was not valid for the data collected in June. Obviously, different phenological stages need specific model calibration, as the presence of undetectable water in non-leaf tissues is variable. All approaches were applied to synthetic HyMap data generated by resampling the spectroradiometer readings. Estimation results did not differ significantly; thus, by neglecting spatial scaling effects, the pure spectral information provided by both data sets is almost equivalent.
机译:采用不同的经验和物理基于方法来从光谱辐射测量(ASD Fieldspec II)中衍生夏季大麦图(n = 22)的植被含水量。 2005年5月和6月在2005年5月和6月的两种不同鉴别阶段获得了数据。对于经验方法,使用1355和710nm的反射和部分最小二乘回归的比率指数提供了最佳估计结果(R2> 0.90)。通过耦合前景和帆模型来执行冠层辐射转移建模。 CW(等效叶水厚度)X Lai的检索值高(R2 = 0.86),具有测量的冠层水含量,但显示出明显的低估。对于5月调查的植物培养阶段,扶手结果非常接近叶子分数的测量水含量,但这对6月收集的数据无效。显然,不同的鉴别阶段需要特定的模型校准,因为非叶组织中未检测到的水存在可变。所有方法都被应用于通过重新采样Spectroradiometer读数而产生的合成Hymap数据。估算结果没有显着差异;因此,通过忽略空间缩放效果,两个数据集提供的纯频谱信息几乎等效。

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