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

机译:CO2差分吸收激光雷达(DIAL)中的大气光学湍流和反射斑点的惠更斯-菲涅耳波光学模拟

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摘要

The measurement sensitivity of C02 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 two 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 C02 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. In this work, we briefly review a description of our model including the limitations along with previous simulations of individual effects. 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 and show good agreement. In addition, advanced studies have been performed to demonstrate the utility of our model in assessing the effects for different lidar geometries on RMS noise and correlation "size" in the receiver plane.
机译:CO 2差分吸收式激光雷达(DIAL)的测量灵敏度会受到许多不同过程的影响。我们先前已经开发了惠更斯-菲涅尔波光学传播代码来模拟以下两个过程的影响:由光束通过大气光学湍流传播引起的影响和反射斑点引起的影响。大气光学湍流会影响目标上能量和相位的光束分布。这些影响包括光束扩展,光束漂移和闪烁,这可能会导致镜头之间的信号噪声增加。另外,已经显示出单独的反射斑点对CO 2 DIAL的灵敏度具有重大影响。但是,在实际的DIAL系统中,正是这些现象的结合,即大气光学湍流和反射斑点的相互作用,才影响结果。在这项工作中,我们简要回顾了对模型的描述,包括限制以及先前对单个效应的模拟。相对于受大气光学湍流和反射斑点影响的实验测量,我们研究了修改后的代码的性能。计算机模拟的结果直接与激光雷达的测量结果进行比较,并显示出良好的一致性。此外,已经进行了高级研究,以证明我们的模型在评估不同激光雷达几何形状对接收器平面中RMS噪声和相关“大小”的影响时的效用。

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