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A Fast Analysis Method for Blue-Green Laser Transmission through the Sea Surface

机译:蓝绿色激光透过海面的快速分析方法

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摘要

The fast estimation of blue-green laser transmission characteristics through the fluctuating sea surface, such as refraction angles and transmittance, is very important to correct operating parameters, detection depth and anti-detection warning in airborne Light Detection and Ranging (LiDAR) applications. However, the geometry of the sea surface is changed by complex environment factors, such as wind and wave, which significantly affect the rapid acquisition of the blue-green laser transmission characteristics. To address this problem, a fast analysis method is provided to rapidly compute the blue-green laser transmittance and refraction angles through the fluctuating sea surface driven by different wind directions and speeds. In the method, a three-dimensional wave model driven by the wind was built to describe the wave spatial distribution varying with time. Using the wave model, the propagation path of the scanning laser footprint was analyzed using the proposed meshing method, thus the transmittance and refraction angles of the optical path can be fast obtained by using parallel computing. The simulation results imply that the proposed method can reduce the time consumption by 70% compared with the traditional analytical method with sequential computing. This paper provides some statistical laws of refraction angles and transmittance through the fluctuating sea surface under different wind conditions, which may serve as a basic for fast computation of airborne LiDAR transmission characteristics in complex environments.
机译:快速估计蓝绿色激光在波动的海面中的透射特性(例如折射角和透射率)对于校正机载光检测和测距(LiDAR)应用中的操作参数,检测深度和反检测警告非常重要。但是,海面的几何形状会因复杂的环境因素(例如风和浪)而发生变化,这极大地影响了蓝绿色激光传输特性的快速获取。为了解决这个问题,提供了一种快速分析方法,以通过由不同风向和速度驱动的波动海面,快速计算蓝绿色激光的透射率和折射角。在该方法中,建立了由风驱动的三维波浪模型来描述波浪随时间变化的空间分布。利用波模型,利用提出的网格划分方法分析了扫描激光足迹的传播路径,从而可以通过并行计算快速获得光路的透射率和折射角。仿真结果表明,与传统的顺序计算分析方法相比,该方法可将时间消耗减少70%。本文提供了在不同风况下通过波动海面的折射角和透射率的一些统计定律,可作为快速计算复杂环境中机载LiDAR传输特性的基础。

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