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A weighted least squares approach to retrieve aerosol layer height over bright surfaces applied to GOME-2 measurements of the oxygen A band for forest fire cases over Europe

机译:加权最小二乘法,用于获取适用于GOME-2氧气A级带的明亮表面上的气溶胶层高度,该带适用于欧洲的森林火灾案例

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This paper presents a?weighted least squares approach to retrieve aerosol layer height from top-of-atmosphere reflectance measurements in the oxygen?A band (758–770?nm) over bright surfaces. A?property of the measurement error covariance matrix is discussed, due to which photons travelling from the surface are given a higher preference over photons that scatter back from the aerosol layer. This is a potential source of biases in the estimation of aerosol properties over land, which can be mitigated by revisiting the design of the measurement error covariance matrix. The alternative proposed in this paper, which we call the dynamic scaling method, introduces a scene-dependent and wavelength-dependent modification in the measurement signal-to-noise ratio in order to influence this matrix. This method is generally applicable to other retrieval algorithms using weighted least squares. To test this method, synthetic experiments are done in addition to application to GOME-2A and GOME-2B measurements of the oxygen?A band over the August?2010 Russian wildfires and the October?2017 Portugal wildfire plume over western Europe.
机译:本文提出了一种加权最小二乘法,可从明亮表面上的氧气?A波段(758–770?nm)的大气层顶部反射率测量值中检索气溶胶层高度。讨论了测量误差协方差矩阵的性质,因为相对于从气溶胶层散射回来的光子,从表面传播的光子具有更高的优先级。这是估计土地上气溶胶特性偏差的潜在来源,可以通过重新考虑测量误差协方差矩阵的设计来缓解。本文提出的替代方案,我们称为动态缩放方法,引入了与场景有关和与波长有关的修改,以影响测量矩阵的信噪比。该方法通常适用于使用加权最小二乘的其他检索算法。为了测试该方法,除了对GOME-2A和GOME-2B进行了对2010年8月俄罗斯野火和2017年10月葡萄牙野火羽流在西欧的氧气?A谱带测量的应用外,还进行了合成实验。

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