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Hyperspectral detection dynamics of archaeological vegetation marks and enhancement using full waveform LiDAR data

机译:利用全波形LiDAR数据对考古植被标记进行高光谱检测动力学和增强

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Archaeological features are the result of anthropogenic interference with the natural soil matrix. This causes differences in the composition and structure of the soil. These influence the development and health of the vegetation on the surface which may be detectable remotely. Indeed much work has been conducted using aerial photography indicating that the use of current remote sensing technologies could lead to improved detection. This paper explores the potential of hyperspectral and full waveform LiDAR data for the mapping of archaeology at an arable site in the UK. It is demonstrated that the archaeological features are detectable by both sensor types most successfully when looking at products that pertain to biomass. This means there is great potential for data fusion approaches using these products. These could be used to improve the spatial resolution of the hyperspectral data and potentially to improve the analysis of biomass in spectra analysis of vegetation parameters.
机译:考古特征是人为干扰天然土壤基质的结果。这导致土壤成分和结构的差异。这些影响了可以远程检测到的地表植被的发育和健康。确实,使用航空摄影已经进行了许多工作,这表明使用当前的遥感技术可以改善探测效果。本文探讨了高光谱和全波形LiDAR数据在英国可耕地进行考古制图的潜力。结果表明,在查看与生物质有关的产品时,两种传感器类型均可最成功地检测出考古特征。这意味着使用这些产品的数据融合方法具有很大的潜力。这些可以用于提高高光谱数据的空间分辨率,并有可能用于改善植被参数光谱分析中的生物量分析。

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