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Design of dual wavelength micro pulse polarization lidar system

机译:双波长微脉冲偏振激光雷达系统设计

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A dual wavelength micro pulse polarization lidar system is designed, in which Nd:YAG laser at 1064nm and 532nm is employed as the exciting source, to research the depolarization ratio, the lidar ratio and the angstrom coefficient of aerosols. Numerical simulations are performed with the standard atmospheric model to verify the detection ability of the system. The simulation results show that the lidar system is capable of detecting the depolarization ratio of aerosols up to a height larger than 6 km at night and 2 km in the daytime with a sigal to noise ratio of 10. In the meantime, the lidar system can also be used to detect the angstrom coefficient, and can provide important scientific data for studies of the relastionship among these parameters.
机译:设计了一种以1064nm和532nm的Nd:YAG激光作为激发源的双波长微脉冲偏振激光雷达系统,研究了其消偏振比,激光雷达比和气溶胶的埃系数。使用标准大气模型进行了数值模拟,以验证系统的检测能力。仿真结果表明,激光雷达系统能够检测到夜间高度大于6 km,白天大于2 km的气溶胶的去极化率,且信噪比为10。还可以用于检测埃系数,并且可以为研究这些参数之间的弹性提供重要的科学数据。

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