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Lidar system model for use with path obscurants and experimental validation

机译:用于路径遮挡物和实验验证的激光雷达系统模型

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摘要

When lidar pulses travel through a short path that includes a relatively high concentration of aerosols, scattering phenomena can alter the power and temporal properties of the pulses significantly, causing undesirable effects in the received pulse. In many applications the design of the lidar transmitter and receiver must consider adverse environmental aerosol conditions to ensure the desired performance. We present an analytical model of lidar system operation when the optical path includes aerosols for use in support of instrument design, simulations, and system evaluation. The model considers an optical path terminated with a solid object, although it can also be applied, with minor modifications, to cases where the expected backscatter occurs from nonsolid objects. The optical path aerosols are characterized by their attenuation and backscatter coefficients derived by the Mie theory from the concentration and particle size distribution of the aerosol. Other inputs include the lidar system parameters and instrument response function, and the model output is the time-resolved received pulse. The model is demonstrated and experimentally validated with military fog oil smoke for short ranges (several meters). The results are obtained with a lidar system operating at a wavelength of 0.905 (mu)m within and outside the aerosol. The model goodness of fit is evaluated using the statistical coefficient of determination whose value ranged from 0.88 to 0.99 in this study.
机译:当激光雷达脉冲穿过包含相对较高浓度的气溶胶的短路径时,散射现象会显着改变脉冲的功率和时间特性,从而在接收到的脉冲中产生不良影响。在许多应用中,激光雷达发射器和接收器的设计必须考虑不利的环境气溶胶条件,以确保达到理想的性能。当光路中包含用于仪器设计,仿真和系统评估的气溶胶时,我们将介绍激光雷达系统运行的分析模型。该模型考虑了以实心物体终止的光路,尽管也可以对它进行少量修改,将其应用于非实心物体发生预期的反向散射的情况。光路气溶胶的特征在于其衰减和反向散射系数,这些系数是根据Mie理论从气溶胶的浓度和粒径分布得出的。其他输入包括激光雷达系统参数和仪器响应功能,而模型输出是时间分辨的接收脉冲。该模型通过短距离(几米)军用雾油烟雾进行了演示和实验验证。用在气溶胶内外的波长为0.905μm的激光雷达系统获得结果。使用统计确定系数评估模型的拟合优度,该系数在本研究中的范围为0.88至0.99。

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