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The Correction ground spectral model for estimating above-ground net primary productivity at the peak of growing season on Meadow Steppe, Hulunbeier, Inner Mongolia, China

机译:估算内蒙古呼伦贝尔草甸草原生长期高峰期地上净初级生产力的校正地面光谱模型

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On the surface of hyperspectral data of remote sensing to estimate grassland biomass, the soil water content, organic matter content important impact on the model application. An ASD Fieldspec 3 spectroradiometer was used for spectral measurements of the Hulunbeier Meadow Steppe, Inner Mongolia, China, in late July, 2013. Ground spectral models were built to estimate the Above-ground Net Primary Productivity (ANPP) at the peak of the growing season from the Correction Normalized Difference Vegetation Index (CNDVI) measured in the field. The SPSS software were used to assess relationships between ANPP and CNDVI. Based on the coefficient of determination (R2), quadratic model (R2=0.808) and exponential model (R2=0.717) were batter than others. Error analysis shows that the linear equation has the biggest standard error of the prediction (SE = 82.42g/m2), the logarithmic curve equation has the smallest SE (SE=18.59g/m2). After considering all factors, a quadratic equation between ANPP and CNDVI (ANPP=3738.048 NDVIMODIS2-259.1588NDVIMODIS+1309.847, R2=0.808, SE=66.25g/m2, MEC=0.820, P <; 0.001) was selected and used for the study area at the peak of the growing season.
机译:在遥感高光谱数据的表面上估算草地生物量,土壤含水量,有机质含量对模型应用有重要影响。 2013年7月下旬,使用ASD Fieldspec 3分光光度计对中国内蒙古呼伦贝尔草甸草原进行了光谱测量。建立了地面光谱模型,以估算生长高峰时的地上净初级生产力(ANPP)。根据现场测量的校正归一化差异植被指数(CNDVI)得出的季节。 SPSS软件用于评估ANPP和CNDVI之间的关系。根据确定系数(R2),二次模型(R2 = 0.808)和指数模型(R2 = 0.717)比其他模型更糟。误差分析表明,线性方程式的预测标准误差最大(SE = 82.42g / m2),对数曲线方程式的预测误差最小(SE = 18.59g / m2)。考虑所有因素后,选择了ANPP和CNDVI之间的二次方程式(ANPP = 3738.048 NDVIMODIS2-259.1588NDVIMODIS + 1309.847,R2 = 0.808,SE = 66.25g / m2,MEC = 0.820,P <; 0.001)在生长季节的高峰期。

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