Satellite Hyperspectral and Multispectral Imaging

G. Verhoeven
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引用次数: 2

Abstract

Satellite‐based imagers have been delivering data products that offer new possibilities to study (archaeological) landscapes via remote recording of the Earth's spectral reflectance (and to some extent thermal emittance) since the 1970s. Although much declassified panchromatic spy footage and some more recent commercial multispectral imagery has already been used with great success in archaeological research, it is expected that the importance and utility of multi‐ and hyperspectral (together denoted spectral) spaceborne imagery will become more important in the near future. This is mainly due to the constant and simultaneous improvements in the spatial and spectral resolving power of these imaging systems. Together with the temporal and radiometric properties, these four characteristics define any remotely‐sensed spaceborne spectral imaging platform. Thus, these parameters allow one to decide on the archaeological usability of the footage acquired.
卫星高光谱和多光谱成像
自20世纪70年代以来,基于卫星的成像仪一直在提供数据产品,通过远程记录地球的光谱反射率(以及某种程度上的热发射率),为研究(考古)景观提供了新的可能性。尽管许多解密的全色间谍镜头和一些最近的商业多光谱图像已经在考古研究中取得了巨大成功,但预计在不久的将来,多光谱和高光谱(统称为光谱)星载图像的重要性和实用性将变得更加重要。这主要是由于这些成像系统的空间和光谱分辨能力不断提高。再加上时间和辐射特性,这四个特征定义了任何遥感星载光谱成像平台。因此,这些参数允许人们决定所获得的素材的考古可用性。
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