Frehlich R
Appl Opt. 1994 Sep 20;33(27):6472-81. doi: 10.1364/AO.33.006472.
The performance of a coherent Doppler lidar is determined by the statistics of the coherent Doppler signal. The derivation and calculation of the covariance of the Doppler lidar signal for random atmospheric wind fields and wind shear are presented. The signal parameters are defined for a general coherent Doppler lidar system in terms of the atmospheric parameters. There are two distinct physical regimes: one in which the transmitted pulse determines the signal statistics and the other in which the wind field and the atmospheric parameters dominate the signal statistics. When the wind fields dominate the signal statistics, Doppler lidar data are nonstationary and the signal correlation time is proportional to the operating wavelength of the lidar. The signal covariance is derived for signal-shot and multiple-shot conditions. For a single shot, the parameters of the signal covariance depend on the random, instantaneous atmospheric parameters. For multiple shots, various levels of ensemble averaging over the t emporal scales of the atmospheric processes are required. The wind turbulence is described by a Kolmogorov spectrum with an outer scale of turbulence. The effects of the wind turbulence are demonstrated with calculations for a horizontal propagation path in the atmospheric surface layer.
相干多普勒激光雷达的性能由相干多普勒信号的统计特性决定。本文给出了随机大气风场和风向切变条件下多普勒激光雷达信号协方差的推导与计算。根据大气参数定义了一般相干多普勒激光雷达系统的信号参数。存在两种不同的物理状态:一种是发射脉冲决定信号统计特性,另一种是风场和大气参数主导信号统计特性。当风场主导信号统计特性时,多普勒激光雷达数据是非平稳的,且信号相关时间与激光雷达的工作波长成正比。推导了单脉冲和多脉冲条件下的信号协方差。对于单脉冲,信号协方差的参数取决于随机的瞬时大气参数。对于多脉冲,需要在大气过程的时间尺度上进行不同程度的总体平均。风湍流由具有湍流外尺度的柯尔莫哥洛夫谱描述。通过对大气表层水平传播路径的计算,展示了风湍流的影响。