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首页> 外文期刊>Applied optics >MODIFIED VERSION OF THE CHAHINE ALGORITHM TO INVERT SPECTRAL EXTINCTION DATA FOR PARTICLE SIZING
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MODIFIED VERSION OF THE CHAHINE ALGORITHM TO INVERT SPECTRAL EXTINCTION DATA FOR PARTICLE SIZING

机译:链式算法的修正版本以反转光谱消光数据以进行粒子尺寸确定

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摘要

A modified version of the nonlinear iterative Chahine algorithm is presented and applied to the inversion of spectral extinction data for particle sizing. Simulated data were generated in a lambda range of 0.2-2 mu m, and particle-size distributions were recovered with radii in the range of 0.14-1.4 mu m. Our results show that distributions and sample concentrations can be recovered to a high degree of accuracy when the indices of refraction of the sample and of the solvent are known. The inversion method needs no a priori assumptions and no constraints on the particle distributions. Compared with the algorithm originally proposed by Chahine, our method is much more stable with respect to random noise, permits a better quality of the retrieved distributions, and improves the overall reliability of the fitting. The accuracy and resolution of the method as functions of noise were investigated and showed that the retrieved distributions are quite reliable up to noise levels of several rms percent in the data. The sensitivity to errors in the real and imaginary parts of the refraction index of the particles was also examined. (C) Optical Society of America. [References: 39]
机译:提出了非线性迭代Chahine算法的改进版本,并将其应用于光谱消光数据的反演以用于粒子大小确定。在λ范围为0.2-2μm的范围内生成模拟数据,并以0.14-1.4μm的半径恢复粒径分布。我们的结果表明,当已知样品和溶剂的折射率时,可以高精度地恢复分布和样品浓度。反演方法不需要先验假设,也不需要限制粒子分布。与Chahine最初提出的算法相比,我们的方法在随机噪声方面更加稳定,可以更好地检索分布的质量,并提高了拟合的整体可靠性。研究了该方法作为噪声函数的准确性和分辨率,结果表明,所获得的分布在数据中达到数均方根百分数的噪声水平时仍十分可靠。还检查了对粒子折射率的实部和虚部中的误差的敏感性。 (C)美国光学学会。 [参考:39]

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