高光谱成像
电磁频谱
全光谱成像
计算机科学
成像光谱仪
分光计
光谱特征
化学成像
遥感
红外线的
人工智能
地质学
光学
物理
标识
DOI:10.1109/msp.2013.2278992
摘要
Over the last decade, hyperspectral imagery (HSI) obtained by remote sensing systems has provided significant information about the spectral characteristics of the materials in the scene. Typically, a hyperspectral spectrometer provides hundreds of narrow contiguous bands over a wide range of the electromagnetic spectrum. Hyperspectral sensors measure the reflective (or emissive) properties of objects in the visible and short-wave infrared (IR) regions (or the mid-wave and long-wave IR regions) of the spectrum. Processing of these data allows algorithms to detect and identify targets of interest in a hyperspectral scene by exploiting the spectral signatures of the materials [1], [2].
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