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Application of Monte Carlo simulation in airborne modulated lidar for bathymetric detection

机译:Monte Carlo仿真在空气中调制激光雷达的应用

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The sensitivity of lidar (light detection and ranging) and the contrast of immersed targets are strongly reduced by the volume backscattering clutter. To overcome this shortcoming it has been proposed to use a microwave modulation in association with an optical carrier at 532nm, which is called modulated lidar. This paper develops a Monte Carlo simulation for application of modulated pulse lidar (light detection and ranging) in bathymetric measurements. First, modulated light pulse propagation in ocean water is simulated by a Monte Carlo model. Second, the echo signal is processed by advanced mathematical tools like cross-correlation and numerical filtering. The simulation results reveal the capability of the modulation approach in suppressing the water backscattering and enhancing the target contrast for the bathymetric field. Furthermore, more simulation experiments are performed with various ocean depth to study the detection performance in different environment. Details of this simulation model, in addition to the simulation results are presented.
机译:通过体积反向散射杂波强烈地降低了激光雷达(光检测和测距)和浸渍靶对比度的敏感性。为了克服这种缺点,已经提出了在532nm处与光学载体相关联的微波调制,该光学载体被称为调制的激光雷达。本文开发了蒙特卡罗模拟,用于在碱基测量中应用调制脉冲激光脉(光检测和测距)。首先,通过蒙特卡罗模型模拟海水中的调制光脉冲传播。其次,回声信号由高级数学工具处理,如互相关和数值滤波。仿真结果揭示了调制方法在抑制水反散射和增强碱基对比度对比的能力。此外,使用各种海洋深度进行更多仿真实验,以研究不同环境中的检测性能。除了提出仿真结果外,该模拟模型的细节。

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