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The prediction of the optical contrast of air-borne targets against the night-sky background for Photopic and NVG sensors

机译:用于Photopic和NVG传感器的空中目标在夜空背景下的光学对比度的预测

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The Havemann-Taylor Fast Radiative Transfer Code (HT-FRTC) represents transmittances, radiances and fluxes by principal components that cover the spectra at very high resolution, allowing fast highly-resolved pseudo line-by-line, hyperspectral and broadband simulations across the electromagnetic spectrum form the microwave to the ultraviolet for satellite-based, airborne and ground-based sensors. HT-FRTC models clear atmospheres and those containing clouds and aerosols, as well as any surface (land/sea/man-made). The HT-FRTC has been used operationally in the NEON Tactical Decision Aid (TDA) since 2008. The TDA combines the HT-FRTC with a thermal contrast model and an NWP model forecast data feed to predict the apparent thermal contrast between different surfaces and ground-based targets in the thermal and short-wave IR. The new objective here is to predict the optical contrast of air-borne targets under realistic night-time scenarios in the Photopic and NVG parts of the spectrum. This requires the inclusion of all the relevant radiation sources, which include twilight, moonlight, starlight, airglow and cultural light. A completely new exact scattering code has been developed which allows the straight-forward addition of any number of direct and diffuse sources anywhere in the atmosphere. The new code solves the radiative transfer equation iteratively and is faster than the previous solution. Simulations of scenarios with different light levels, from situations during a full moon to a moonless night with very low light levels and a situation with cultural light from a town are presented. The impact of surface reflectance and target reflectance is investigated.
机译:Havemann-Taylor快速辐射转移码(HT-FRTC)通过覆盖光谱的主要成分来表示透射率,辐射率和通量,可在非常高的分辨率下进行快速高分辨率的伪逐线,高光谱和宽带模拟光谱从微波到紫外线,用于卫星,机载和地面传感器。 HT-FRTC可以模拟清晰的大气层以及包含云,气溶胶以及任何表面(陆地/海洋/人造)的大气层。自2008年以来,HT-FRTC已在NEON战术决策援助(TDA)中投入使用。TDA将HT-FRTC与热对比模型和NWP模型预测数据结合使用,以预测不同表面与地面之间的表观热对比。和短波红外中的基于目标的目标。此处的新目标是在光谱的Photopic和NVG部分中,在现实的夜间场景下预测空中目标的光学对比度。这就要求包括所有相关的辐射源,包括暮光,月光,星光,气辉和文化光。已经开发出一种全新的精确散射代码,该代码允许直接添加大气中任意位置的任意数量的直接和漫射源。新代码可迭代求解辐射传递方程,并且比以前的解决方案更快。给出了模拟不同光照水平的场景的方法,从满月到无月夜的光照非常低的场景,以及具有城镇文化照明的场景。研究了表面反射率和目标反射率的影响。

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