首页> 外文会议>Imaging Systems and Techniques, 2004. (IST). 2004 IEEE International Workshop on >A two-steps inexact Newton method for atmospheric remote sensing
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A two-steps inexact Newton method for atmospheric remote sensing

机译:气象遥感的两步不精确牛顿法

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We deal with regularization procedures for the nonlinear inverse problem of atmospheric profile retrievals from measurements of electromagnetic radiations. Since the inverse problem is severely ill-posed, Newton's linearization gives unsatisfactory results. In that case the linearized system is ill-conditioned, and its resolutions is very sensitive to the noise of input data. Here we propose an outer-inner two-steps iterative algorithm which belongs to the general class of inexact Newton method. The outer iteration is the Newton method and the inner iteration is the truncated Landweber one. In particular, truncated Landweber method regularizes the resolution of any outer Newton linearized step. The mathematical formulation of the 1-d problem is analyzed and the algorithm is described. Numerical experiments are performed, and the results are compared with the classical (i.e., one-step) Landweber method for nonlinear inverse problems.
机译:我们处理从电磁辐射测量中获取的大气剖面非线性反问题的正则化程序。由于反问题存在严重的不适性,因此牛顿线性化的结果不尽人意。在那种情况下,线性化系统是病态的,其分辨率对输入数据的噪声非常敏感。在这里,我们提出了一种内外两步迭代算法,该算法属于不精确牛顿法的一般类。外部迭代是牛顿法,内部迭代是截断的Landweber方法。尤其是,截断的Landweber方法可对任何外部Newton线性化步骤的分辨率进行正则化。分析了一维问题的数学公式,并描述了算法。进行了数值实验,并将结果与​​用于非线性逆问题的经典(即一步式)Landweber方法进行了比较。

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