红外与激光工程, 2015, 44 (S): 0220, 网络出版: 2016-01-26  

湍流廓线激光雷达的数据处理方法

Data processing techniques for turbulence profile Lidar
作者单位
西北核技术研究所,陕西 西安 710024
摘要
湍流廓线激光雷达是近十年出现的测量大气湍流强度廓线的新技术,目前数据处理已成为该技术的关键环节。对湍流廓线激光雷达的数据处理方法进行了详细地描述,重点研究了双光斑图像背景阈值计算方法与大气湍流强度廓线反演算法。比较了迭代法、最大类间方差法和统计法三种背景阈值计算方法分别在强信号与弱信号下的计算结果,得出统计法是比较适合双光斑图像的背景阈值计算方法。在背景阈值计算的基础上对图像进行分割并计算得到双光斑的质心距,统计多帧图像的质心距起伏得到达角起伏方差。然后利用HV-21模型模拟了从到达角起伏方差反演大气湍流强度廓线的算法,所得结果与原始值大小相近、整体变化趋势一致,但是不能反映原始值的细节变化趋势。
Abstract
The atmospheric turbulence profile Lidar is a new technique presented near ten years which is used to measure the optical turbulence altitude profile. Nowadays data processing becomes a significant problem of this technique. The data processing methods of the turbulence profile lidar were described in detail. Methods to calculate threshold values of dual light spot images and inversion of atmospheric turbulence profile were studied mainly. These threshold values calculated by iterative method, maximum classes variance method and statistic method were compared with each other, statistic method was an appropriate method to calculate threshold values of dual light spot images. And then coordinates of dual light spot were obtained and centroid distances were calculating based this threshold values. Arrival angle fluctuations were computed with centroid distances of multiple images. Inversion of atmospheric turbulence profile from arrival angle fluctuations was simulated with HV-21 model. These values retrieved and original data were in same magnitudes and same integrative trend but differed in partial curvilinear trend.
参考文献

[1] Rao Ruizhong. Introduction to Turbulence Atmospheric Optics[M]. Hefei: Anhui Science and Technology Publishing House, 2005: 6-8. (in Chinese)

[2] Rao Ruizhong. Combined effect of turbulence and thermal blooming of laser propagation in atmosphere[J]. Infrared and Laser Engineering, 2006, 35(2): 130-134. (in Chinese)

[3] Yuan Renmin, Zeng Zongyong, Xiao Liming, et al. Comparison of some methods of measuring refractive index structure parameter[J]. Acta Optica Sinica, 2000, 20(6): 755-761. (in Chinese)

[4] Weng Ningquan, Xiao Liming, Gong Zhiben. The theory and experimental verification of 915M microwave radar[J]. Chinese Journal of Quantum Electronics, 2001, 18(1): 92-96. (in Chinese)

[5] Ni Zhibo, Huang Honghua, Huang Yinbo, et al. Atmospheric turbulence profile measurement techniques based on scintillation method[J]. Infrared and Laser Engineering, 2010, 39(1): 160-165. (in Chinese)

[6] 侯再红, 吴毅, 张守川,等.湍流廓线激光雷达的研制[J].强激光与粒子束,2006,18(10):1602-1604.

    Hou Zaihong, Wu Yi, Zhang Shouchuan, et al. Development of turbulence profile lidar[J]. High Power Laser and Particle Beams, 2006, 18(10): 1602-1604. (in Chinese)

[7] Otsu N A. Threshold selection method from gray-level histogram[J]. IEEE Transaction System Man and Cybernetics, 1979, 9(1): 62-66.

[8] Hu Bin, Gong Ningsheng. An improved Otsu′s thresholding segmentation method[J]. Microelectronics & Computer, 2009, 26(12): 153-155. (in Chinese)

[9] Ian Gatland, John M Stewart, Gary G Gimmestad. Inversion techniques for the differential image motion lidar[C]//SPIE, 2009, 7324: 73240C_1-73240C_8.

[10] Su Yi, Wan Min. High Energy Laser System[M]. Beijing: National Defense Industry Press, 2004: 130. (in Chinese)

封双连, 强希文, 宗飞, 李志朝, 常金勇, 赵军卫, 吴敏, 江钰. 湍流廓线激光雷达的数据处理方法[J]. 红外与激光工程, 2015, 44(S): 0220. Feng Shuanglian, Qiang Xiwen, Zong Fei, Li Zhichao, Chang Jinyong, Zhao Junwei, Wu Min, Jiang Yu. Data processing techniques for turbulence profile Lidar[J]. Infrared and Laser Engineering, 2015, 44(S): 0220.

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!