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作 者:徐文静 冼锦洪 孙东松[1] Xu Wenjing;Xian Jinhong;Sun Dongsong(School of Earth and Space Sciences,University of Science and Technology of China,Hefei 230026,China;School of Atmospheric Sciences,Nanjing University,Nanjing 210023,China)
机构地区:[1]中国科学技术大学地球和空间科学学院,安徽合肥230026 [2]南京大学大气科学学院,江苏南京210023
出 处:《红外与激光工程》2023年第3期187-196,共10页Infrared and Laser Engineering
基 金:国家自然科学基金(41774193)。
摘 要:激光雷达具有探测距离远,分辨率高,对气溶胶浓度变化敏感等优势,偏振激光雷达还能够对粒子形态做区分,根据消光系数及退偏比值识别云、雾、烟尘等。利用偏振激光雷达进行扫描观测,可以实现火灾烟尘的快速识别。通过对不同波长的激光雷达探测距离进行仿真,结果表明,波长为1064 nm的激光雷达探测距离为532 nm波长的1.3~1.4倍。通过优化扫描策略及算法,可剔除固定障碍物及临时移动障碍物的影响。为避开安装点位周边高度相近的障碍物,通常会给激光雷达设置一定仰角,对存在探测仰角时产生的水平距离偏差及垂直高度测量偏差进行计算,当激光雷达探测仰角为2°时,6 km处测量高度偏差为209.397 m。使用高斯烟羽模型对烟尘浓度分布进行仿真,当大气稳定度为B,平均风速为1 m/s时,200 m高度处烟尘浓度分布高值点距地面火点的径向距离≥1 km,为火点准确定位提供了修正依据。分别在辽宁省盘锦市盘山县绕阳湖景区,广东省东莞市观音山森林公园进行外场实验,偏振激光雷达在开阔地带及多障碍物山体地带下,均能够快速识别烟尘。Objective The fires in forests,wetlands,grasslands and other natural areas are characterised by their sudden and destructive nature,and it is important to reduce the damage caused by fires through early detection and fighting.Traditional fire monitoring methods such as manual inspections and cameras do not allow for 24/7,wide-area monitoring,and there is a lag in detecting fires.Therefore,the use of lidar with high precision,high resolution,long detection distance and sensitivity to changes in aerosol particle concentration,etc.,can play an important role in the field of smoke and fire monitoring,to achieve early detection and early warning of fire.Researchers have made some explorations in this area.However,for lidar detection distance of 2 km or more,the single pulse energy of the laser was on the order of millijoule,and there is a human eye safety risk for outdoor use.Moreover,the researchers have not given an analysis of the measurement and application in a multi-obstacle environment.Therefore,a polarimetric lidar system with a day and night detection,and detection distance of more than 6 km and the single pulse energy of the laser on the order of microjoule is proposed.Methods Laser wavelengths adapted to outdoor long-range detection are obtained through simulations.The lidar scanning strategies are designed for different installation scenarios,for flat environments and for environments with many obstacles,respectively.As the lidar measurement areas are at a certain height from the ground,correction for fire point positioning errors is based on a Gaussian plume model.A portable lidar system with polarization channels was built to further validate the simulation results,scanning control strategies and inversion algorithms through field experiments.Results and Discussions By simulating the detection distance of lidar with different wavelengths,the results show that the detection distance of lidar with 1064 nm wavelength is 1.3-1.4 times of 532 nm wavelength(Fig.2).By optimizing the scanning strategy and algori
分 类 号:P407.2[天文地球—大气科学及气象学]
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