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Backscatter amplification effect of the mean normalized signal power of coherent lidar in the turbulent atmosphere

机译:相干激光雷达在湍流大气中平均归一化信号功率的反向散射放大效应

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摘要

It is presented the calculations of the mean normalized signal power of pulsed coherent Doppler lidar as a function of theintensity of optical turbulence on the propagation path of the probing beam. It is shown that with increasing the optical(refractive) turbulence in the atmosphere, the mean normalized signal power increases with respect to the mean power ofthe echo of the signal in the absence of turbulence and then decreases and becomes less than the mean normalized signalpower in the absence of turbulence. The calculations had performed for the parameters of the Stream Line lidar system.Comparison was made the calculated data with the results of measurements of the mean normalized signal power of theStream Line after scattering of the probing beam on a screen located at a distance of 500 meters from the lidar.
机译:提出了脉冲相干多普勒激光雷达的平均归一化信号功率与探测光束传播路径上光学湍流强度的函数关系。结果表明,随着大气中光学\ r \ n(折射)湍流的增加,在没有湍流的情况下,平均归一化信号功率相对于信号回波的平均功率增加,然后降低并降低。在没有湍流的情况下变得小于平均归一化信号功率。对流线激光雷达系统的参数进行了计算。\ r \ n将探测光束在屏幕上散射后,将计算出的数据与\ r \ n流线的平均归一化信号功率的测量结果进行比较位于距激光雷达500米的距离处。

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