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        Numerical semi-empirical modeling of lidar attenuation characteristics in atmosphere

        Tan Zhuangbin,Zhang Yan,Yang Yang,Chen Jintao,Qu Chengzhi,Ma Feifan 한국물리학회 2022 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.81 No.12

        Long-distance measurement of lidar is a critical problem in various felds, such as airborne lidar detection, surveying, and mapping. Attenuation characteristic is the key factor afecting the lidar detection capability. However, some long-distance measurement methods based on the widely used and validated theoretical models are usually inefcient, while others relying on empirical models have limited applications due to experimental difculties. This study proposes a semi-empirical model of long-distance measurement based on the Beer–Lambert–Bouguer law adopting mathematical methods. Compared to the theoretical model, the calculation efciency of the semi-empirical model we constructed has been improved by more than two orders of magnitude, and the accuracy can reach more than 98% of the theoretical model. Compared to other empirical models, its accuracy is closer to the theoretical model, and the computational efciency is similar. It can be more efectively applied to the actual long-distance detection scene.

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