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FIELD SPECTROSCOPY FOR VEGETATION EVALUATION ALONG THE NUTRIENT AND ELEVATION GRADIENT ABOVE THE TREE LINE IN THE KRKONOSE MOUNTAINS NATIONAL PARK

机译:沿克尔克索山国家公园营养学和仰卧梯度沿营养和高程梯度植被评价的现场光谱

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This paper examines the relations between vegetation spectra measured in the field along the nutrient and elevation gradient in the most valuable parts of The Krkonose Mountains tundra and selected parameters describing vegetation state and condition (fAPAR, plant cover and average vegetation height). The main goal was to find relations and indices based on spectral measurements that could be used for vegetation evaluation and classification in practice and management. The vegetation parameters and spectral properties were also compared for two datasets - one acquired in July and second in August 2015. The best correlations were obtained for plant cover (R~2 above 0.8 for July dataset and above 0.7 for August dataset) and two types of indices - using the wavelengths of red edge, e.g. OSAVI or mND705, and indices for vegetation water content estimates using the wavelengths in shortwave infrared region of the spectra in combination with wavelengths above 800 nm, e. g. NDII. The worst results were found for fAPAR with maximal values of R~2 just above 0.4 with the indices using the wavelengths around 700 nm. For vegetation height the results differ between July and August data - R~2 around 0.62 in July and only 0.47 in August for vegetation indices using the wavelengths of visible and red edge regions.
机译:本文审查了营养山脉苔原最有价值部分和描述植被状态和条件(Fapar,植物覆盖和平均植被高度)中最有价值的植被和高程梯度测量的植被光谱之间的关系。主要目标是基于光谱测量的基于光谱测量的关系和指标,可用于植被评估和在实践和管理中的分类。还比较了植被参数和光谱性质,以比较两种数据集 - 2015年8月在7月和第二次获得的一个数据集。植物覆盖(7月数据集高于0.8的植物覆盖,以及8月数据集的0.7以上的最佳相关性)和两种类型索引 - 使用红色边缘的波长,例如奥斯瓦生或MND705,以及植被含水量的指标,用于使用光谱的短波红外区域中的波长与800nm以上的波长组合使用波长,例如。 G。 ndii。最糟糕的结果是针对FAPAR找到了R〜2的最大值,R〜2高于0.4的索引,使用波长为700nm的指数。对于植被高度,七月和八月数据之间的结果与7月份左右0.62左右,8月份仅有0.47,用于使用可见和红色区域波长的植被指数。

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