光子学报, 2012, 41 (10): 1135, 网络出版: 2012-11-07   

基于差分吸收激光雷达的云消除算法研究

A Cloud Elimination Algorithm Based on Differential Absorption Lidar
作者单位
中国科学院安徽光学精密机械研究所, 合肥 230031
摘要
差分吸收激光雷达测量臭氧浓度过程中, 云层信号会造成对流层臭氧浓度剧烈的抖动, 带来了很大的测量误差.本文提出了一种云消除算法, 该算法通过插值云层高度区域内的臭氧浓度, 有效消除了对流层臭氧浓度的剧烈抖动.通过阐述其理论基础, 给出了其算法关键点, 即云信号的识别和云高度的精确定位.根据云层消光系数的特点, 通过设定气溶胶消光系数阈值获取云层高度信息, 利用累加平均有效减少噪音造成的测量误差.结果表明, 在精确确定云高、云底的基础上, 运用线性插值算法对臭氧测量结果进行修正, 可以有效克服云层对测量结果造成的急剧起伏.
Abstract
The cloud signals can cause severe wobble of tropospheric ozone concentration in the process of differential absorption lidar measurement of ozone concentration, and bring significant errors. A cloud elimination algorithm is presented. The algorithm effectively eliminate tropospheric ozone wobble by interpolating the ozone concentration in cloud height region. The key point of the cloud algorithm is given through expounding its theoretical basis. The key point of the cloud elimination is the discrimination of cloud signal and accurate positioning of the cloud height. The cloud height information is determined by setting the aerosol extinction coefficient threshold according to the characteristics of the cloud extinction coefficient. The cumulative average of retrieved ozone concentration reduces measurement errors caused by noise. The results show that the correction by interpolation algorithm of ozone measurements in cloud region could overcome the wobble of the ozone measurements caused by clouds.
参考文献

[1] 石玉珍, 王庚辰, 徐永福.北京市城近郊区光化学烟雾模拟研究[J].气候与环境研究,2008,13(1):85-92.

    SHI Yu-zhen, WANG Geng-chen, XU Yong-fu. Simulation study of photochemical smog in Beijing urban and suburban areas[J]. Climatic and Environmental Research, 2008, 13(1): 84-92.

[2] 李杰, 吴其重, 高超, 等. 东亚春季边界层臭氧的数值模拟研究[J]. 环境科学研究, 2009,22(1):1-6.

    LI Jie, WU Qi-zhong, GAO Chao, et al. Model study of ozone in the boundary layer over east asia in spring[J]. Research of Environmental Sciences, 2009, 22(1): 1-6.

[3] FUKUCHI T, FUJII T, CAO N, et al. Tropospheric O3 measurement by simultaneous differential absorption lidar and null profiling and comparison with sonde measurement[J]. 2001 Society of Photo-Optical Insrumentation Engineers, 2001, 40(9): 1994-1949.

[4] NAKAZATO M, NAGAI T, SAKAI T, et al. Tropospheric ozone differential-absorption lidar using stimulated Raman scattering in carbon dioxide[J].Applied Optics, 2007, 46(12): 2269-2279.

[5] HU Shun-xing, HU Huan-ling, ZHOU Jun, et al. Dual-DIAL: a pair of wavelengths for high precise measurements of ozone[J]. Acta Meteorologica Sinica, 2002, 16(2): 242-252.

[6] PAL S R, STEINBRECHT W, CARSWELL A I.Automated method for lidar determination of cloud-base height and vertical extent[J]. Applied Optics, 1992, 31(10): 1488-1494.

[7] 韩道文, 刘文清, 张玉钧, 等. 用于反演云层高度的记忆式滑动窗口积分算法[J]. 强激光与粒子束, 2008,20(1):1-5.

    HAN Dao-wen, LIU Wen-qing, ZHANG Yu-jun, et al. Memorable glide window integral algorithm for retrieving cloud height[J]. High Power Laser And Particle Beams, 2008, 20(1): 1-5.

[8] FERNALD F G. Analysis of atmospheric lidar observation: some comments[J]. Applied Optics, 1984, 23(5): 652-653.

[9] 刘厚通, 陈良富, 苏林. Fernald前向积分用于机载激光雷达气溶胶后向散射系数反演的理论研究[J]. 物理学报, 2011,60(6):064204-1-064204-9.

    LIU Hou-tong, CHEN Liang-fu, SU Lin. Theoretical research of Fernald forward integration method for aerosol backscatter coefficient inversion of airborne atmosphere detecting lidar[J]. Acta Phys Sin, 2011, 60(6): 064204-1-064204-9.

[10] 陶宗明, 吴德成, 刘东, 等. 激光雷达反演气溶胶后向散射系数误差估算[J]. 中国激光, 2011,38(12):1214001-1-1214001-5.

    TAO Zong-ming, WU De-cheng, LIU Dong, et al. Estimation of aerosol backscatter coefficient error in lidar data processing[J]. Chinese Journal of Lasers, 2011, 38(12): 1214001-1-1214001-5.

[11] 范广强, 刘建国, 张天舒, 等. 双通道偏振激光雷达监测沙尘暴污染及其输送研究[J]. 中国激光, 2011, 38(s114):006-1-006-5.

    FAN Guang-qiang, LIU Jian-guo, ZHANG Tian-shu, et al. Dual-channel polarization lidar monitoring of sandstorm and its transportation research[J]. Chinese Journal of Lasers, 2011, 38(s114): 006-1-006-5.

[12] 刘巧军, 郑玉臣, 朱建华, 等. 利用紫外Mie散射激光雷达探测澳门地区沙尘暴事件[J].光谱学与光谱分析, 2012, 32(3):626-629.

    LIU Qiao-jun, ZHENG Yu-cheng, ZHU Jian-hua, et al. Ultraviolet Mie lidar observations of aerosol extinction in a dust storm case over Macao[J]. Spectroscopy and Spectral Analysis, 2012, 32(3): 626-629.

[13] 胡顺星, 胡欢陵, 张寅超, 等. 差分吸收激光雷达测量环境SO2[J]. 中国激光,2004, 31(9):1122-1126.

    HU Shun-xing, HU Huan-ling, ZHANG Yin-chao, et al. Different absorption lidar for environmental SO2 measuremts[J]. Chinese Journal of Lasers, 2004, 31(9): 1122-1126.

[14] 陶宗明, 陈宇, 褚德林, 等. AML-2车载激光雷达测量臭氧的大气后向散射系数项修正方法研究[J]. 大气与环境光学学报, 2008, 3(6):401-406.

    TAO Zong-ming, CHEN Yu, CHU De-lin, et al. Atmospheric backscattering correction for ozone measurement with AML-2 mobile lidar[J]. Journal of Atmospheric and Environmental Optics, 2008, 3(6): 401-406.

范广强, 刘建国, 张天舒, 董云升, 赵雪松, 陆亦怀, 刘文清. 基于差分吸收激光雷达的云消除算法研究[J]. 光子学报, 2012, 41(10): 1135. FAN Guang-qiang, LIU Jian-guo, LIU Wen-qing, LU Yi-huai, ZHANG Tian-shu, DONG Yun-sheng, ZHAO Xue-song. A Cloud Elimination Algorithm Based on Differential Absorption Lidar[J]. ACTA PHOTONICA SINICA, 2012, 41(10): 1135.

本文已被 3 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!