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气溶胶激光雷达的指数迭代反演新算法与分析

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针对单通道气溶胶激光雷达反演技术中的消光系数边界值问题,提出了基于指数迭代的气溶胶消光系数反演算法,以优化反演计算中的消光系数边界值.该算法利用4阶收敛的指数迭代法求解消光系数边界值与激光雷达回波信号之间的非线性方程,并通过Fernald法反演气溶胶消光系数.采用指数迭代结合Fernald法反演水平扫描数据和垂直定点探测数据,将Klett法和Mie-Raman法反演结果作为标准值,验证了指数迭代法的反演性能.数据分析结果表明,相比不动点迭代,指数迭代反演精度高,收敛速度快,迭代次数少,反演误差约为14%,迭代次数约为5,迭代时间约为9 μs,可快速准确地反演激光雷达水平扫描信号及垂直定点探测信号的消光系数边界值.
New Algorithm and Analysis of Exponential Iterative Inversion for Aerosol Lidar
In response to the boundary value issue of the extinction coefficient in single-channel aerosol lidar inversion technology,an aerosol extinction coefficient inversion algorithm based on exponential iteration has been proposed to optimize the boundary value in the inversion calculation.The 4th-order convergent exponential iteration method is utilized to solve the nonlinear equation between the extinction coefficient boundary value and the backscattering signal of the lidar,and the Fernald method is used to invert the aerosol extinction coefficient.By using exponential iteration combined with the Fernald method,horizontal scanning data and vertical fixed-point detection data were inverted.The results were compared with those obtained from the Klett and Mie-Raman methods,which served as reference values to validate the performance of the exponential iteration method.The data analysis results indicate that,compared to the fixed-point iteration method,the exponential iteration method exhibits higher precision,faster convergence,and fewer iterations.The inversion error is approximately 14%,with around five iterations taking about 9 μs.This approach enables the rapid and accurate inversion of the extinction coefficient boundary values for horizontal scanning and vertical fixed-point detection signals from lidar.

lidarexponential iterationatmospheric extinction coefficientboundary value

高迎春、李仕春、魏飞龙、段海涛、华灯鑫、王玉峰、高飞

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西安理工大学机械与精密仪器工程学院,陕西 西安 710048

激光雷达 指数迭代 大气消光系数 边界值

2024

激光与光电子学进展
中国科学院上海光学精密机械研究所

激光与光电子学进展

CSTPCD北大核心
影响因子:1.153
ISSN:1006-4125
年,卷(期):2024.61(23)