欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
会议
> 会议详情页
UV Raman lidar for fine detection of atmospheric relative humidity profile
所属机构名称:西安理工大学
会议名称:International Symposium on Photoelectronic Detection and Imaging 2009
成果类型:会议
会场:北京
相关项目:新型全光纤分光大气温度探测拉曼激光雷达的关键技术与方法研究
作者:
Yufeng Wang|Shichun Li|Jiandong Mao|Yaoke Xue|Li Wang|Dengxin Hua|
同会议论文项目
新型全光纤分光大气温度探测拉曼激光雷达的关键技术与方法研究
期刊论文 20
会议论文 25
获奖 2
同项目会议论文
Observation of Dust Aerosol in Yinchuan with Portable Mie Scattering Lidar
Fine-detection of aerosol optical properties using an ultraviolet rotational Raman lidar
Analysis of Telescope Coupling Efficiency for all-fiber Spectroscopic Raman Lidar
UV Raman Lidar for Fine-detection of Atmospheric Relative Humidity Profile
Research on method of LED-induced chlorophyll fluorescence spectrum and image information acquisitio
Study of inversion algorithm and system simulation based on Fabry-Perot interferometer atmosphere wi
Image acquisition mode of Michelson interferometer for upper atmospheric wind field detection
Mixed-layer depth observation over Xi’an area with Mie lidar
Observation of Dust aerosol profile of Xi’an with Mie scattering lidar
Ultraviolet Rotational Raman Lidar for Accurate Temperature Profiling of the Lower Troposphere
A combined rotational-vibrational Raman lidar for profiling the atmospheric temperature, humidity an
Observation of atmospheric aerosol optical properties with Lidar
Development of portable Mie scattering lidar and its applications
A combined rotational-vibrational Raman lidar for profiling the atmospheric temperature, humidity an
All-fiber Spectroscope Using Second-order Fiber Bragg Gratings for Rotation Raman Lidar
An EMD-based denoising method for lidar signal
Observation of mixed-layer depth of atmosphere with lidar
激光雷达大气遥感技术新进展
基于ARM的激光雷达高速数据采集系统设计
基于Zemax的拉曼激光雷达望远镜耦合效率研究
Ultraviolet Raman lidar for quantitative measurements of atmospheric water vapor and aerosol extinct
An Lidar data compression method based on improved LZW and Huffman algorithm
Design of Optical Fiber Raman Temperature Lidar Based on FBGs Spectroscopic Technology
Study of Data Acquisition and Visualizing Technology of Lidar Signal with High Speed and Resolution