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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Inverse problem for particle size distributions of atmospheric aerosols using stochastic particle swarm optimization
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Inverse problem for particle size distributions of atmospheric aerosols using stochastic particle swarm optimization

机译:基于随机粒子群算法的大气气溶胶粒径分布反问题

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摘要

As a part of resolving optical properties in atmosphere radiative transfer calculations, this paper focuses on obtaining aerosol optical thicknesses (AOTs) in the visible and near infrared wave band through indirect method by gleaning the values of aerosol particle size distribution parameters. Although various inverse techniques have been applied to obtain values for these parameters, we choose a stochastic particle swarm optimization (SPSO) algorithm to perform an inverse calculation. Computational performances of different inverse methods are investigated and the influence of swarm size on the inverse problem of computation particles is examined. Next, computational efficiencies of various particle size distributions and the influences of the measured errors on computational accuracy are compared. Finally, we recover particle size distributions for atmospheric aerosols over Beijing using the measured AOT data (at wavelengths λ=0.400, 0.690, 0.870, and 1.020 γm) obtained from AERONET at different times and then calculate other AOT values for this band based on the inverse results. With calculations agreeing with measured data, the SPSO algorithm shows good practicability.
机译:作为解决大气辐射传递计算中光学特性的一部分,本文着重于通过收集气溶胶粒度分布参数的值,通过间接方法获得可见光波段和近红外波段中的气溶胶光学厚度(AOT)。尽管已应用各种逆向技术来获取这些参数的值,但我们选择了随机粒子群优化(SPSO)算法来进行逆向计算。研究了不同逆方法的计算性能,并研究了群大小对计算粒子反问题的影响。接下来,比较各种粒度分布的计算效率和测量误差对计算精度的影响。最后,我们使用在不同时间从AERONET获得的测得的AOT数据(波长λ= 0.400、0.690、0.870和1.020γm)恢复了北京大气气溶胶的粒径分布,然后基于反结果。计算结果与实测数据吻合,SPSO算法具有很好的实用性。

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