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Ground-based differential absorption lidar for water-vapor and temperature profiling: methodology

机译:基于地面的差分吸收式激光雷达,用于水蒸气和温度分布图:方法

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摘要

A comprehensive formulation of the differential absorption lidar (DIAL) methodology is presented that explicitly includes details of the spectral distributions of both the transmitted and the backscattered light. The method is important for high-accuracy water-vapor retrievals and in particular for temperature measurements. Probability estimates of the error that is due to Doppler-broadened Rayleigh scattering based on an extended experimental data set are presented, as is an analytical treatment of errors that are due to averaging in the nonlinear retrieval scheme. System performance requirements are derived that show that water-vapor retrievals with an accuracy of better than 5% and temperature retrievals with an accuracy of better than 1 K in the entire troposphere are feasible if the error that results from Rayleigh-Doppler correction can be avoided. A modification of the DIAL technique, high-spectral-resolution DIAL avoids errors that are due to Doppler-broadened Rayleigh backscatter and permits simultaneous water-vapor and wind measurements with the same system. (C) 1998 Optical Society of America. [References: 51]
机译:提出了差分吸收激光雷达(DIAL)方法的全面表述,该方法明确包含透射光和反向散射光的光谱分布的详细信息。该方法对于高精度水蒸气的回收,特别是对温度的测量非常重要。提出了基于扩展的实验数据集的,由于多普勒增宽的瑞利散射而引起的误差的概率估计,以及对由于非线性检索方案中的平均值导致的误差的分析处理。得出的系统性能要求表明,在整个对流层中,精度优于5%的水汽反演和精度优于1 K的温度反演是可行的,如果可以避免由Rayleigh-Doppler校正引起的误差。对DIAL技术的一种改进,即高光谱分辨率DIAL避免了由于多普勒增宽的瑞利背向散射而引起的误差,并允许使用同一系统同时进行水蒸气和风的测量。 (C)1998年美国眼镜学会。 [参考:51]

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