Böckmann C
Institute of Mathematics, University of Potsdam, PF 601553, D-14415 Potsdam, Germany.
Appl Opt. 2001 Mar 20;40(9):1329-42. doi: 10.1364/ao.40.001329.
A specially developed method is proposed to retrieve the particle volume distribution, the mean refractive index, and other important physical parameters, e.g., the effective radius, volume, surface area, and number concentrations of tropospheric and stratospheric aerosols, from optical data by use of multiple wavelengths. This algorithm requires neither a priori knowledge of the analytical shape of the distribution nor an initial guess of the distribution. As a result, even bimodal and multimodal distributions can be retrieved without any advance knowledge of the number of modes. The nonlinear ill-posed inversion is achieved by means of a hybrid method combining regularization by discretization, variable higher-order B-spline functions and a truncated singular-value decomposition. The method can be used to handle different lidar devices that work with various values and numbers of wavelengths. It is shown, to my knowledge for the first time, that only one extinction and three backscatter coefficients are sufficient for the solution. Moreover, measurement errors up to 20% are allowed. This result could be achieved by a judicious fusion of different properties of three suitable regularization parameters. Finally, numerical results with an additional unknown refractive index show the possibility of successfully recovering both unknowns simultaneously from the lidar data: the aerosol volume distribution and the refractive index.
提出了一种专门开发的方法,用于通过多波长光学数据反演对流层和平流层气溶胶的粒子体积分布、平均折射率以及其他重要物理参数,例如有效半径、体积、表面积和数浓度。该算法既不需要分布的解析形状的先验知识,也不需要分布的初始猜测。因此,即使是双峰和多峰分布也可以在没有任何关于模式数量的先验知识的情况下被反演出来。通过将离散化正则化、可变高阶B样条函数和截断奇异值分解相结合的混合方法实现非线性不适定反演。该方法可用于处理使用不同波长值和数量的不同激光雷达设备。据我所知,首次表明仅一个消光系数和三个后向散射系数就足以求解。此外,允许高达20%的测量误差。这一结果可以通过明智地融合三个合适正则化参数的不同属性来实现。最后,具有额外未知折射率的数值结果表明,有可能从激光雷达数据中同时成功恢复两个未知量:气溶胶体积分布和折射率。