Comparison and research of group refractivity models and atmospheric delay to lidar

Jiuying Chen, Mei Zhou, Ge-Er Teng, Huijing Zhang, Jian Hu, Chuanrong Li
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Abstract

Satellite laser range system measures the distance between the satellite and the surface of the earth by figuring out the transit time of laser pulse. The beam is refracted when it goes through the atmosphere. The atmosphere refraction effect causes laser propagation delay and path bending, which is one of the key factors to restrict the accuracy of laser ranging. In order to improve the accuracy of atmospheric refraction delay correction, it is necessary to strengthen the study of atmospheric group refractivity models and atmospheric refraction delay correction method. According to the data of Xuzhou upper air meteorological station, which are the monthly values of upper limit layers for 30 years (1981-2010) in China, three atmospheric group refractivity models were analyzed and compared. The atmospheric refraction delays to LiDAR were calculated by ray tracing method. The differences among the group refractivity models as a function of month or direction angle were given, which lay the foundation for the practical application and precision evaluation of LiDAR.
群折射率模型与大气对激光雷达延迟的比较研究
卫星激光测距系统通过计算激光脉冲的传输时间来测量卫星与地球表面之间的距离。光束穿过大气层时发生折射。大气折射效应导致激光传输延迟和路径弯曲,是制约激光测距精度的关键因素之一。为了提高大气折射延迟校正的精度,有必要加强对大气群折射模型和大气折射延迟校正方法的研究。利用徐州高空气象站1981-2010年中国30年的逐月上限层资料,对3种大气群折射率模式进行了分析和比较。利用光线追踪法计算了大气对激光雷达的折射延迟。给出了不同组折射率模型随月份和方向角的变化规律,为激光雷达的实际应用和精度评价奠定了基础。
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