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Influence of Atmospheric Turbulence on LIDAR Performance

机译:大气湍流对激光乐脉性能的影响

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In the interference analysis of LIDAR system, atmospheric turbulence model is indispensable. To improve the accuracy of atmospheric effects in the LADAR simulator, Exponential Weibull model is adopted to calculate atmospheric turbulence, achieving a physically-based simulation of a LADAR system integrated with quantitative atmospheric turbulence. The feasibility of the proposed method is verified by comparing simulated and field data. To evaluate LIDAR performance in complex environments, the method of analyzing the system performance based on a general simulation framework is proposed. A general and systematic physically reasonable imaging LADAR simulation model combining "laser - target - atmosphere - LADAR imaging" is achieved for assessment of LADAR imaging system. Experimental results show that the turbulence can cause energy dispersion, leading to the detection of false alarm.
机译:在激光雷达系统的干扰分析中,大气湍流模型是必不可少的。为了提高LADAR模拟器中的大气效应的准确性,采用指数威布尔模型来计算大气湍流,实现了与定量大气湍流集成的LADAR系统的物理基础仿真。通过比较模拟和现场数据来验证所提出的方法的可行性。为了评估复杂环境中的激光雷达性能,提出了基于一般仿真框架分析系统性能的方法。实现了“激光 - 目标 - 大气 - LADAL成像”的一般和系统的物理上合理的成像,用于评估LADAR成像系统。实验结果表明,湍流会导致能量分散,导致检测误报。

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