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Analysis of systematic errors of lidar gas analysis in the atmosphere by the differential absorption lidar method

机译:差分吸收激光雷达法分析大气中激光雷达气体的系统误差

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摘要

In the present work, systematic errors of lidar gas analysis in the atmosphere by the differential absorption lidar method in the near-and middle-IR ranges of the spectrum are analyzed. It is demonstrated that the systematic errors depend on many factors, including the meteorological parameters and concentrations of the examined gases along the sensing path, instability of the spectral parameters of laser radiation lines, shift of the absorption line centers caused by the air pressure, Doppler broadening of backscattered signals, and other sources of errors. Methods of error minimization in reconstructing lidar profiles of the examined atmospheric gas concentrations are suggested.
机译:在本工作中,分析了在近红外光谱和中红外光谱范围内通过差分吸收激光雷达法分析大气中激光雷达气体的系统误差。结果表明,系统误差取决于许多因素,包括沿探测路径的气象参数和所检测气体的浓度,激光辐射线光谱参数的不稳定性,气压引起的吸收线中心的偏移,多普勒反向散射信号的加宽以及其他错误源。建议在重建所检查的大气气体浓度的激光雷达轮廓时最小化误差的方法。

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