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Classification of grassland successional stages using airborne hyperspectral imagery

机译:利用机载高光谱图像分类草地演替阶段

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摘要

Plant communities differ in their species composition, and, thus, also in their functional trait composition, at different stages in the succession from arable fields to grazed grassland. We examine whether aerial hyperspectral (414–2501 nm) remote sensing can be used to discriminate between grazed vegetation belonging to different grassland successional stages. Vascular plant species were recorded in 104.1 m2 plots on the island of Öland (Sweden) and the functional properties of the plant species recorded in the plots were characterized in terms of the ground-cover of grasses, specific leaf area and Ellenberg indicator values. Plots were assigned to three different grassland age-classes, representing 5–15, 16–50 and >50 years of grazing management. Partial least squares discriminant analysis models were used to compare classifications based on aerial hyperspectral data with the age-class classification. The remote sensing data successfully classified the plots into age-classes: the overall classification accuracy was higher for a model based on a pre-selected set of wavebands (85%, Kappa statistic value = 0.77) than one using the full set of wavebands (77%, Kappa statistic value = 0.65). Our results show that nutrient availability and grass cover differences between grassland age-classes are detectable by spectral imaging. These techniques may potentially be used for mapping the spatial distribution of grassland habitats at different successional stages.
机译:从可耕地到放牧的草地,植物群落的物种组成以及功能性状组成各不相同。我们检查了是否可以使用空中高光谱(414–2501 nm)遥感来区分属于不同草地演替阶段的放牧植被。在Öland(瑞典)岛上的104.1 m2地块中记录了维管植物物种,并根据草地的地面覆盖率,比叶面积和Ellenberg指示剂值对地上记录的植物物种的功能特性进行了表征。地块被划分为三种不同的草地年龄等级,分别代表5-15年,16-50年和> 50年的放牧管理年限。使用偏最小二乘判别分析模型将基于航空高光谱数据的分类与年龄分类进行比较。遥感数据成功地将地块归类为年龄类别:基于一组预先选择的波段(85%,Kappa统计值= 0.77)的模型的总体分类精度高于使用整个波段的模型( 77%,卡伯统计值= 0.65)。我们的结果表明,可以通过光谱成像检测到不同年龄层之间的养分有效性和草皮差异。这些技术可能潜在地用于绘制不同演替阶段的草地栖息地的空间分布。

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