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Integrated use of field spectroscopy and satellite remote sensing for defence and security applications in Cyprus

机译:在塞浦路斯的国防和安全应用中综合使用了现场光谱学和卫星遥感技术

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Underground structures can affect their surrounding landscapes in different ways such as soil moisture content, soil composition and vegetation vigor. Vegetation vigor is often observed on the ground as a crop mark; a phenomenon which can be used as a proxy to denote the presence of underground and not visible structures. This paper presents the results obtained from field spectroradiometric campaigns at 'buried' underground structures in Cyprus. A SVC-1024 field spectroradiometer was used and in-band reflectances were determined for medium and high resolution satellite sensors, including Landsat. A number of vegetation indices such as NDVI were obtained while a 'smart index' was developed. The aim of the 'smart index' is to detect underground military structures by using existing vegetation indices or other in-band algorithms. In this study, test areas were identified, analyzed and modeled. The areas were analyzed and tested in different scenarios, including: (a) the 'natural state' of the underground structure (b) the different type of crop over the underground structure and imported soil (c) the different types of non-natural material over the underground structure. A reference target in the nearby area was selected as a baseline. Controllable meteorological and environmental parameters were acquired and monitored.
机译:地下结构可以以不同的方式影响其周围的景观,例如土壤含水量,土壤成分和植被活力。人们经常在地面上观察到植被的活力,将其视为一种作物标记;一种现象,可以用来表示地下和不可见结构的存在。本文介绍了在塞浦路斯“埋藏”的地下结构中通过现场光谱辐射活动获得的结果。使用了SVC-1024现场光谱辐射计,并确定了包括Landsat在内的中高分辨率卫星传感器的带内反射率。在开发“智能指数”的同时,获得了许多植被指数,例如NDVI。 “智能指数”的目的是通过使用现有的植被指数或其他带内算法来检测地下军事结构。在这项研究中,对测试区域进行了识别,分析和建模。在不同的情况下对这些区域进行了分析和测试,包括:(a)地下结构的“自然状态”(b)地下结构上的不同类型的农作物和进口土壤(c)不同类型的非天然材料在地下结构上。选择附近区域的参考目标作为基准。采集并监测了可控的气象和环境参数。

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