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首页> 外文期刊>Applied optics >Correction scheme for experimental biases in differential absorption lidar tropospheric ozone measurements based on the analysis of shot per shot data samples
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Correction scheme for experimental biases in differential absorption lidar tropospheric ozone measurements based on the analysis of shot per shot data samples

机译:基于每次拍摄数据样本分析的差分吸收激光雷达对流层臭氧测量中实验偏差的校正方案

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From lidar signals detected with a shot per shot differential absorption lidar instrument tuned for tropospheric ozone measurements and recording each individual return, we reconstruct histograms of their sampled values for each channel of our digitizers. The analysis of their shape permits the correction of our measurements for experimental biases. In particular, a negative correlation is found between the skew of the histograms and the intensity of the backscattered light. The skew comes from a tail at high sampled values, interpreted as due to a raise of the relative contribution to the signal of a signal-induced noise when this intensity diminishes. By fitting a Gaussian function to the histograms without considering their tails, we calculate average signals unbiased by the corresponding noise. This approach allows us to increase the range of our ozone profiles, up to as much as double it in some cases. # 1997 Optical Society of America
机译:通过对每一次发射的差分吸收式激光雷达仪的一次发射检测到的激光雷达信号进行调谐,以对流层臭氧测量并记录每个单独的回波,我们为数字化仪的每个通道重建了其采样值的直方图。通过对其形状进行分析,可以校正我们对实验偏差的测量结果。特别地,在直方图的偏斜和反向散射光的强度之间发现负相关。偏斜来自于高采样值的尾部,这被解释为是由于强度降低时,信号引起的噪声对信号的相对贡献增加。通过将高斯函数拟合直方图而不考虑尾部,我们可以计算出不受相应噪声影响的平均信号。这种方法使我们能够将臭氧分布图的范围扩大到某些情况下的两倍之多。 #1997美国眼镜学会

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