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Spectroradiometric requirements for the reflective module of the airborne spectrometer ARES

机译:机载光谱仪ARES的反射模块的光谱辐射要求

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摘要

The Airborne Reflective/Emissive Spectrometer is specified as a whisk-broom imaging spectrometer for remote sensing of land surfaces covering the wavelength regions 0.47-2.45 /spl mu/m and 8-12 /spl mu/m with 160 spectral bands. The instrument is being built by Integrated Spectronics, financed by the German Aerospace Agency (DLR) and the GeoResearch Centre Potsdam (GFZ) and will be available to the scientific community from end 2005 on. The spectroradiometric design is based on scientific requirements derived from three main application scenarios comprising vegetation, soil, and mineral sciences. Two of these are described in this letter. Measured or modeled reflectance spectra are input to a simulation model that calculates at-sensor radiance spectra, resamples them with the channel-specific response functions, adds different amounts of noise in the radiance domain, and performs a retrieval to get the corresponding noisy surface reflectance spectra. The retrieval results as a function of the sensor noise level are compared with the accuracy requirements imposed by the different application fields taking into account the technical boundary conditions. The final specifications account for the most demanding requirements of the three application fields: a spectral sampling distance of 13-14 nm in the 470-1800 nm region, and 12 nm in the 2000-2450-nm region. The required noise-equivalent radiances are 5, 3, and 2 nW/spl middot/cm/sup -2//spl middot/sr/sup -1//spl middotm/sup -1/ for the spectral regions 470-1000, 1000-1800, and 2000-2450 nm, respectively.
机译:机载反射/发射光谱仪被指定为扫帚成像光谱仪,用于遥感覆盖160个光谱带的波长范围为0.47-2.45 / spl mu / m和8-12 / spl mu / m的陆地表面。该仪器由Integrated Spectronics制造,由德国航空航天局(DLR)和波茨坦GeoResearch Center(GFZ)资助,并将于2005年底开始提供给科学界。光谱辐射设计基于从三种主要应用场景得出的科学要求,包括植被,土壤和矿物科学。这封信中描述了其中两个。将测量或建模的反射光谱输入到仿真模型,该模型计算传感器的辐射光谱,使用特定于通道的响应函数对其进行重新采样,在辐射域中添加不同量的噪声,并进行检索以获取相应的噪声表面反射率光谱。根据传感器的噪声水平,将检索结果与考虑技术边界条件的不同应用领域提出的精度要求进行比较。最终规格说明了三个应用领域中最苛刻的要求:在470-1800 nm范围内的光谱采样距离为13-14 nm,在2000-2450 nm范围内的光谱采样距离为12 nm。对于光谱区域470-,所需的等效噪声辐射为5、3和2 nW / spl middot / cm / sup -2 // spl middot / sr / sup -1 // spl middot / nm / sup -1 1000、1000-1800和2000-2450 nm。

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