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Species Distribution Model using Hyperspectral Data Application in Peatland, Central Kalimantan

机译:帕帕曼省泥炭地对泥炭型数据应用的物种分布模型

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Tumih/Parepat (Combretocarpus-rotundatus Mig. Dencer) of the family Anisophylleaceae and Meranti (Shorea Belangerang, ShoreaTeysmanniana Dyer ex. Brandis) of Dipterocarpaceae are groups of species of vegetation that is modeled for the designation of its spread. Pioneer species are predicted as an indicator of ecosystem restoration succession of wet tropical peatland characteristic (unique) and very susceptible (fragile) in an endemic Sundaland hotspot. Projected climate change and conservation planning a topic of heated discussion, the analysis of alternative approaches and the development of a combination of search algorithm projection models within the fabric of the diffusion of the species to attain this through a geospatial information system technology. Model approach used to work out problems in research on this vegetation species level based machine learning is a method (hybrid), which is a combination of wavelet and neural network. Often the approach to field data into general use in the management of natural resources and biodiversity assessment. Expression of the hybrid models provides encouraging results, to decide the classification of the species Tumih/Parepat and Meranti through mapping of vegetation species that are backed up by the pattern of the spectral curve of the field spectrometer.
机译:Tumih / Parepat(Combretocarpus-rotundatus mig。家庭Anisophylleaceae和Meranti(Shoreaysmanniana dyer前EX。Brandis)的Dipterocarpaceae是Dipterocarpaceae的植被组,这些植被是为其传播而建模的。先驱物种被预测为湿热带泥土特征(独特)和非常敏感(脆弱)在特有的Sundaland热点中的生态系统恢复连续的指标。预计的气候变化和保护规划了激烈的讨论主题,分析了替代方法的分析和开发物种扩散的织物内的搜索算法投影模型的组合,通过地理空间信息系统技术实现了这一目标。模型方法用于解决该植被种类水平的机器学习研究中的问题是一种方法(混合),是小波和神经网络的组合。经常将现场数据的方法普遍用于管理自然资源和生物多样性评估。混合模型的表达提供了令人鼓舞的结果,通过映射由场光谱仪的光谱曲线图案备份的植被物种的映射来决定物种Tumih / Parepat和Meranti的分类。

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