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Sensitivity and information content of aerosol retrievals from the Advanced Very High Resolution Radiometer: radiometric factors

机译:先进超高分辨率辐射计的气溶胶回收物的灵敏度和信息含量:辐射因子

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The sensitivity of aerosol optical depths tau(1) and tau(2) derived from the Advanced Very High Resolution Radiometer (AVHRR) channels 1 and 2, centered at lambda(1) = 0.63 and lambda(2) = 0.83 mum, respectively, and of an effective Angstrom exponent et, derived therefrom as alpha = -In(tau(1)/tau(2))/In(X,/(2lambda)), to calibration uncertainties, radiometric noise, and digitization is estimated. Analyses are made both empirically (by introduction of perturbations into the measured radiances and estimation of the respective partial derivatives) and theoretically (by use of a decoupled form of the single-scattering approximation of the radiative transfer equation). The two results are in close agreement. The errors, Deltatau(i) and Deltaalpha(i) are parameterized empirically as functions Of tau(i), radiometric errors, and Sun and view geometry. In particular, the a errors change in approximately inverse proportion to T and are comparable with, or even exceed, typical alpha signals over oceans when T < 0.25. Their detrimental effect on the information content of the AVHRR-derived size parameter gradually weakens as T increases. (C) 2002 Optical Society of America. [References: 45]
机译:从先进超高分辨率辐射计(AVHRR)通道1和2得出的气溶胶光学深度tau(1)和tau(2)的灵敏度分别为lambda(1)= 0.63和lambda(2)= 0.83 mum,并从中推导出有效的埃斯特罗姆指数等(α= -In(tau(1)/ tau(2))/ In(X,/(2lambda))来估计校准不确定性,辐射噪声和数字化。既可以凭经验进行分析(通过将扰动引入到所测量的辐射中并估计各个偏导数),也可以进行理论上(通过使用辐射传递方程的单散射近似值的解耦形式)进行分析。这两个结果非常吻合。误差Deltatau(i)和Deltaalpha(i)根据经验被参数化为tau(i),辐射测量误差以及Sun和视图几何的函数。特别地,当T <0.25时,误差与T的变化成反比,并且与海洋上的典型α信号相当甚至超过。随着T的增加,它们对源自AVHRR的大小参数的信息内容的有害影响逐渐减弱。 (C)2002年美国眼镜学会。 [参考:45]

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