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Lidar sounding of the optical parameter of atmospheric turbulence

机译:激光雷达探测大气湍流的光学参数

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The operation of a lidar intended for clear air turbulence (CAT) positioning on the basis of the backscatter enhancement (BSE) effect is analyzed using a turbulence model with a power-law spectrum. Systematic distortions occurring due to a need to regularize the lidar positioning problem solution are estimated. It is shown that the effect of molecular viscosity of air on the positioning result can be neglected if the wave parameter, which characterizes the diffraction manifestation, is higher than 3. This corresponds to sounding ranges of more than 1 km for optical or UV lidars. The analysis results show that the BSE lidar positioning accuracy weakly depends on the exponent in the turbulence spectrum in regions of severe turbulence. The results can justify a physical experiment for the design of an aircraft system for the lidar detection of CAT regions ahead of the flight course.
机译:使用具有幂律谱的湍流模型,分析了基于后向散射增强(BSE)效果的旨在进行清晰空气湍流(CAT)定位的激光雷达的操作。估计由于需要规范激光雷达定位问题解决方案而发生的系统失真。结果表明,表征衍射表现的波参数大于3时,可以忽略空气分子粘度对定位结果的影响。这对应于光学或UV激光雷达的探测范围大于1 km。分析结果表明,在严重湍流区域,BSE激光雷达的定位精度几乎不依赖于湍流谱中的指数。结果可以证明进行飞机系统设计的物理实验是合理的,该系统用于在飞行路线之前对CAT区域进行激光雷达检测。

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