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Influence of daylight and noise current on cloud and aerosol observations by spaceborne elastic scattering lidar

机译:日光和噪声电流对星载弹性散射激光雷达对云和气溶胶观测的影响

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摘要

The influence of daylight and noise current on cloud and aerosol observations by realistic spaceborne lidar was examined by computer simulations. The reflected solar radiations, which contaminate the daytime return signals of lidar operations, were strictly and explicitly estimated by accurate radiative transfer calculations. It was found that the model multilayer cirrus clouds and the boundary layer aerosols could be observed during the daytime and the nighttime with only a few laser shots. However, high background noise and noise current make it difficult to observe volcanic aerosols in middle and upper-atmospheric layers. Optimal combinations of the laser power and receiver field of view areproposed to compensate for the negative influence that is due to these noises. For the computer simulations, we used a realistic set of lidar parameters similar to the Experimental Lidar in-Space Equipment of the National Space Development Agency of Japan.
机译:通过计算机模拟检查了日光和噪声电流对现实的星载激光雷达对云和气溶胶观测的影响。反射的太阳辐射污染了激光雷达的白天返回信号,并通过精确的辐射传递计算严格而明确地进行了估算。结果发现,在白天和晚上仅需几次激光照射就可以观察到模型多层卷云和边界层气溶胶。然而,高背景噪声和噪声电流使得难以观察到中高层大气层中的火山气溶胶。提出了激光功率和接收器视场的最佳组合,以补偿由于这些噪声引起的负面影响。对于计算机模拟,我们使用了一组逼真的激光雷达参数,类似于日本国家航天局的“实验激光雷达”太空设备。

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