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Huygens-Fresnel wave-optics simulation of atmospheric optical turbulence and reflective speckle in CO2 differential absorption lidar (DIAL)

机译:Huygens-Fresnel波光光学仿真大气光学湍流和二氧化碳差动吸收LIDAR中的反射斑点(表盘)

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The measurement sensitivity of CO$-2$/ differential absorption lidar (DIAL) can be affected by a number of different processes. We have previously developed a Huygens-Fresnel wave optics propagation code to simulate the effects of tow of these processes: effects caused by beam propagation through atmospheric optical turbulence and effects caused by reflective speckle. Atmospheric optical turbulence affects the beam distribution of energy and phase on target. These effects include beam spreading, beam wander and scintillation which can result in increased shot-to-shot signal noise. In addition, reflective speckle alone has been shown to have a major impact on the sensitivity of CO$-2$/ DiAL. However, in real DiAL systems it is a combination of these phenomena, the interaction of atmospheric optical turbulence and reflective speckle, that influences the results. The performance of our modified code with respect to experimental measurements affected by atmospheric optical turbulence and reflective speckle is examined. The results of computer simulations are directly compared with lidar measurements. The limitations of our model are also discussed. In addition, studies have been performed to determine the importance of key parameters in the simulation. The result of these studies and their impact on the overall results will be presented.
机译:CO $ -2 $ /微分吸收激光雷达(拨号)的测量灵敏度可能受到许多不同的过程的影响。我们以前开发了惠更斯菲涅耳波光光学传播代码,以模拟这些过程的牵引的效果:通过大气光学湍流引起的光束传播造成的效果和反射斑点引起的效果。大气光学湍流影响目标能量和相位的光束分布。这些效果包括光束扩散,梁漂移和闪烁,这可能导致射击到射击信号噪声增加。此外,单独的反射斑点已被证明对CO $ -2 $ /拨号的敏感性产生重大影响。然而,在实际拨号系统中,它是这些现象的组合,大气光学湍流和反射斑点的相互作用,影响结果。检查了所修改的代码关于受大气光湍流和反射斑点影响的实验测量的性能。计算机模拟结果与激光雷达测量相比直接相比。还讨论了我们模型的局限性。此外,已经进行了研究以确定关键参数在模拟中的重要性。将提出这些研究的结果及其对整体结果的影响。

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