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Remote sensing reflectance reconstruction to obtain water optical properties from MERIS multi-spectral satellite images

机译:遥感反射率重建,从MERIS多光谱卫星图像获得水的光学特性

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We use a multiple regression analysis and a data bank of about 400 reflectance spectra to reconstruct hyperspectral reflectances between 400 and, 900 nm with a 5 nm step using only the values known at the wavelengths of the MERIS sensor level 2 data. For in situ remote sensing reflectances measured during different oceanographic missions, the reconstruction is within 2 per cent almost over the entire spectrum. The main difference (to a maximum of 4 per cent) usually occurs at the inflexion point of the reflectance curve between 580 and 600 nm. Observed in-situ remote sensing reflectances or reconstructed spectra are inverted using a Water Colour Simulator bio-optical model (WASI) to obtain the inherent optical properties (IOP) of the water. The values derived by the model are compared with the measurements when available. To validate the reconstruction, we compare the results of the model inversion using the initial spectrum or the reconstructed one as input. Preliminary results show that the derived values from the inversion of the reconstructed spectrum are very close to the values generated from the inversion of the initial spectrum, especially in case 1 waters. This reconstruction technique is used to generate hyperspectral remote sensing reflectances from reflectance data calculated by the MERIS sensor. We use the reconstructed spectra as input to be inverted in the WASI model in order to quantify the substances' concentrations; in particular, the inversion is working well for the suspended paniculate matter concentrations.
机译:我们使用多元回归分析和约400个反射光谱的数据库,仅使用MERIS传感器2级数据波长处的已知值,以5 nm的步长重建400至900 nm之间的高光谱反射率。对于在不同海洋任务期间测得的原地遥感反射率,几乎在整个光谱范围内重建都在2%以内。主要差异(最大4%)通常发生在580至600 nm反射率曲线的拐点处。使用Water Simulator生物光学模型(WASI)反转观察到的原位遥感反射率或重建的光谱,以获得水的固有光学特性(IOP)。将模型得出的值与可用的测量值进行比较。为了验证重建,我们比较了使用初始频谱或重建频谱作为输入的模型反演结果。初步结果表明,从重构光谱的反演中得出的值非常接近于从初始光谱的反演中得出的值,尤其是在情况1的水域中。这种重建技术用于根据MERIS传感器计算出的反射率数据生成高光谱遥感反射率。我们使用重建的光谱作为输入,在WASI模型中进行求逆,以量化物质的浓度。特别是,对于悬浮的颗粒物浓度,反演效果很好。

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