Faquan Li
  According to our database1,
  Faquan Li
  authored at least 15 papers
  between 2016 and 2024.
  
  
Collaborative distances:
Collaborative distances:
Timeline
Legend:
Book In proceedings Article PhD thesis Dataset OtherLinks
On csauthors.net:
Bibliography
  2024
Online Testing Method for the Fine Spectral Characteristics of Narrow-Band Interference Filters Based on a Narrow-Linewidth Tunable Laser.
    
  
    Sensors, February, 2024
    
  
  2023
Design of a Data Acquisition, Correction and Retrieval of Na Doppler Lidar for Diurnal Measurement of Temperature and Wind in the Mesosphere and Lower Thermosphere Region.
    
  
    Remote. Sens., November, 2023
    
  
    Remote. Sens., July, 2023
    
  
    Remote. Sens., February, 2023
    
  
    Remote. Sens., January, 2023
    
  
  2022
Multichannel Interconnection Decomposition for Hyperspectral LiDAR Waveforms Detected From Over 500 m.
    
  
    IEEE Trans. Geosci. Remote. Sens., 2022
    
  
Real-Time Monitoring of SO2 Emissions Using a UV Camera with Built-in NO2 and Aerosol Corrections.
    
  
    Sensors, 2022
    
  
Clouds in the Vicinity of the Stratopause Observed with Lidars at Midlatitudes (40.5-41°N) in China.
    
  
    Remote. Sens., 2022
    
  
  2021
Significance on Background Radiation of Wide-Field-Of-View Staring Remote Sensing System on Geosynchronous Orbit Satellite.
    
  
    Proceedings of the 9th International Conference on Agro-Geoinformatics, 2021
    
  
  2020
High Resolution 3-D Imaging of Mesospheric Sodium (Na) Layer Utilizing a Novel Multilayer ICCD Imager and a Na Lidar.
    
  
    Remote. Sens., 2020
    
  
  2019
The Radiative Transfer Characteristics of the O2 Infrared Atmospheric Band in Limb-Viewing Geometry.
    
  
    Remote. Sens., 2019
    
  
The Near-Space Wind and Temperature Sensing Interferometer: Forward Model and Measurement Simulation.
    
  
    Remote. Sens., 2019
    
  
  2017
Corrections to "A Combined Rotational Raman-Rayleigh Lidar for Atmospheric Temperature Measurements Over 5-80 km With Self-Calibration".
    
  
    IEEE Trans. Geosci. Remote. Sens., 2017
    
  
  2016
A Combined Rotational Raman-Rayleigh Lidar for Atmospheric Temperature Measurements Over 5-80 km With Self-Calibration.
    
  
    IEEE Trans. Geosci. Remote. Sens., 2016