Lidar is an active remote sensing instrument, which has the characteristics of high precision and high spatial-temporal resolution. It has been widely used in the detection of atmospheric environmental parameters (aerosol, CO2, ozone, etc.) and meteorological parameters (temperature, water vapor, pressure, wind speed and direction, etc.). In recent years, atmospheric phenomena such as haze and climate change have been widely concerned by the public, and the national environmental governance and meteorological forecasting departments have an urgent demand for atmospheric observation technology. Atmospheric Lidar has been developed rapidly in China, and has achieved good research achievements. The research progress and development status of Lidar for atmospheric detection in recent years were introduced and summarized in this paper. According to the different detection objects detected by Lidars, Lidars can be classified as Mie scattering Lidar, Raman Lidar, high-spectral-resolution Lidar, differential absorption Lidar and et al. The advantages and disadvantages of all kinds of atmospheric detection Lidars and their applications in different detection objects were comprehensively introduced in this paper. Finally, the bottlenecks of Lidar technology were summarized, and the development trend of Lidar was also prospected.
裘家伟 Qiu Jiawei章振 Zhang Zhen余赛芬 Yu Saifen魏天问 Wei Tianwen袁金龙 Yuan Jinlong夏海云 Xia Haiyun
韩斌 Han Bin曹杰 Cao Jie史牟丹 Shi Moudan张镐宇 Zhang Haoyu梁龙 Liang Long张凯莉 Zhang Kaili熊凯鑫 Xiong Kaixin郝群 Hao Qun
Lingbing Bu方静怡 Fang Jingyi毛志华 Mao Zhihua樊增昌 Fan Zengchang张轩烨 Zhang Xuanye车冠辰 Che Guanchen单坤玲 Shan Kunling刘继桥 Liu Jiqiao张璐 Zhang Lu刘思含 Liu Sihan张杨 Zhang Yang陈卫标 Chen Weibiao
荀宇畅 Xun YuchangXuewu Cheng杨国韬 Yang Guotao
李博 Li Bo裴成章 Pei Chengzhang宋跃辉 Song Yuehui李仕春 Li ShichunFei Gao王玉峰 Wang Yufeng华灯鑫 Hua Dengxin