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布里渊激光雷达遥感中气体温度和压力反演的改进方法。

Improved method for gas temperature and pressure retrieval in Brillouin lidar remote sensing.

作者信息

Zhang Peng, Liang Kun

出版信息

Appl Opt. 2021 Jan 20;60(3):652-661. doi: 10.1364/AO.404995.

Abstract

The Rayleigh-Brillouin scattered spectrum is an important tool for analyzing the temperature and pressure of gas in Brillouin lidar remote sensing. The Tenti-S6 model has been widely used to retrieve atmospheric temperatures. However, the retrieval accuracy of this method is unsatisfactory. We analyzed the influence of several factors on the retrieval accuracy of this method and developed an improved method for temperature and pressure retrieval. First, the Rayleigh-Brillouin spectral baseline was corrected using a new fitting procedure, and an experimental spectrum that is of high coincidence with the line shape of the S6 model could subsequently be obtained. Second, the influence of the Airy function on the retrieval accuracy was analyzed, and the retrieval error could be decreased using the Tenti-S6 model without the Airy function. We found that the gas parameters could be precisely detected under low-pressure conditions. Compared with the traditional method, our improved method could effectively reduce the temperature and pressure retrieval errors. The experimental results of nitrogen scattering in the laboratory and air scattering demonstrate the effectiveness, universality, and viability of the proposed improved method.

摘要

瑞利-布里渊散射光谱是布里渊激光雷达遥感中分析气体温度和压力的重要工具。Tenti-S6模型已被广泛用于反演大气温度。然而,该方法的反演精度并不理想。我们分析了几个因素对该方法反演精度的影响,并开发了一种改进的温度和压力反演方法。首先,使用一种新的拟合程序校正瑞利-布里渊光谱基线,随后可获得与S6模型线形高度吻合的实验光谱。其次,分析了艾里函数对反演精度的影响,使用不含艾里函数的Tenti-S6模型可降低反演误差。我们发现,在低压条件下可以精确检测气体参数。与传统方法相比,我们的改进方法能有效降低温度和压力反演误差。在实验室进行的氮气散射实验结果和空气散射实验结果证明了所提出的改进方法的有效性、通用性和可行性。

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