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Multiple Solutions of the Inverse Problem of Retrieval of Scattering-atmosphere Optical Parameters from Remote Measurements

机译:遥感反演散射大气光学参数反问题的多重解

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Space-borne measurements of the intensity of outgoing reflected and scattered short-wavelength radiation for a few viewing angles (multi-angle measurements) are used to determine the optical parameters of a cloudless atmosphere. In this case, it is proposed to formulate the problem of complex (simultaneous) retrieval of extinction and scattering aerosol optical parameters on the basis of radiation transfer equations with the minimum use of a priori information. The simplest variant is considered within the framework of the standard model of illumination of a plane-parallel, vertically-uniform atmosphere by parallel solar rays. The optical parameters averaged over the entire thickness of the atmosphere are sought in this case. The scattering phase function is approximated by one-parameter functions. The parameter is equal to the phase function mean cosine. A numerical neural-network algorithm and an analytical single-scattering method were used to solve the problem within the framework of the considered simplest model. In the first case, the resulting solution differs only slightly from the predetermined a priori model. In the second case, multiple solutions are found.
机译:在几个视角下对反射和散射的短波长辐射的强度进行星载测量(多角度测量),用于确定无云大气的光学参数。在这种情况下,建议在辐射传递方程的基础上,以最少的先验信息为基础,提出消光和散射气溶胶光学参数的复杂(同时)检索问题。最简单的变体被认为是在平行太阳垂直照亮的平行平面大气的标准模型框架内。在这种情况下,寻求在大气的整个厚度上平均的光学参数。散射相位函数由一参数函数近似。该参数等于相位函数平均余弦。在所考虑的最简单模型的框架内,使用数值神经网络算法和分析性单散射方法解决了该问题。在第一种情况下,所得解决方案与预定的先验模型仅略有不同。在第二种情况下,找到了多个解决方案。

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