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Model and measurements of linear mixing in thermal IR ground leaving radiance spectra

机译:热红外地面中留下辐射光谱的线性混合模型和测量

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摘要

Hyperspectral thermal IR remote sensing is an effective tool for the detection and identification of gas plumes and solid materials. Virtually all remotely sensed thermal IR pixels are mixtures of different materials and temperatures. As sensors improve and hyperspectral thermal IR remote sensing becomes more quantitative, the concept of homogeneous pixels becomes inadequate. The contributions of the constituents to the pixel spectral ground leaving radiance are weighted by their spectral emissivities and their temperature, or more correctly, temperature distributions, because real pixels are rarely thermally homogeneous. Planck's Law defines a relationship between temperature and radiance that is strongly wavelength dependent, even for blackbodies. Spectral ground leaving radiance (GLR) from mixed pixels is temperature and wavelength dependent and the relationship between observed radiance spectra from mixed pixels and library emissivity spectra of mixtures of'pure' materials is indirect.A simple model of linear mixing of subpixel radiance as a function of material type, the temperature distribution of each material and the abundance of the material within a pixel is presented. The model indicates that, qualitatively and given normal environmental temperature variability, spectral features remain observable in mixtures as long as the material occupies more than roughly 10% of the pixel. Field measurements of known targets made on the ground and by an airborne sensor are presented here and serve as a reality check on the model. Target spectral GLR from mixtures as a function of temperature distribution and abundance within the pixel at day and night are presented and compare well qualitatively with model output.
机译:高光谱热红外遥感是检测和识别气体羽流和固体材料的有效工具。几乎所有遥感热红外像素都是不同材料和温度的混合物。随着传感器的改进和高光谱热红外遥感的定量化,均质像素的概念变得不足。成分对离开辐射的像素光谱地面的贡献由其光谱发射率和温度或更准确地说是温度分布加权,因为实际像素很少是热均匀的。普朗克定律定义了温度和辐射之间的关系,该关系在很大程度上与波长有关,即使对于黑体也是如此。来自混合像素的光谱离开辐射的光谱(GLR)与温度和波长有关,并且来自混合像素的观察到的辐射光谱与``纯''材料混合物的库发射率光谱之间的关系是间接的。给出了材料类型的函数,每种材料的温度分布以及像素内材料的丰度。该模型表明,定性地给出给定的正常环境温度变化,只要材料占据像素的大约10%以上,混合物中的光谱特征仍然可以观察到。此处介绍了地面上和通过机载传感器对已知目标进行的野外测量,并作为对模型的真实性检查。呈现了混合物的目标光谱GLR与昼夜像素内温度分布和丰度的关系,并将其与模型输出进行了定性比较。

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