A pulsed 2-micron coherent Doppler lidar system at NASA Langley Research Center in Virginia flew on the NASA’s DC-8 aircraft during the NASA Genesis and Rapid Intensification Processes (GRIP) during the summer of 2010. The participation was part of the project Doppler Aerosol Wind Lidar (DAWN) Air. Selected results of airborne wind profiling are presented and compared with the dropsonde data for verification purposes. Panoramic presentations of different wind parameters over a nominal observation time span are also presented for selected GRIP data sets. The real-time data acquisition and analysis software that was employed during the GRIP campaign is introduced with its unique features
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A pulsed 2-micron coherent Doppler lidar system at NASA Langley Research Center in Virginia flew on ...
The latest flight demonstration of Doppler Aerosol Wind Lidar (DAWN) at NASA Langley Research Center...
NASA Langley Research Center has a long history of developing 2-micron laser transmitter for wind se...
Abstract- The goal of this NASA Instrument Incubator Program (IIP)-2004 project is to take a signifi...
Systems, methods, and devices of the present invention enable post processing of airborne Doppler wi...
A pulsed CO2 Doppler Lidar, developed for airborne measurements of atmospheric wind fields, is descr...
An all-fiber airborne pulsed coherent Doppler lidar (CDL) prototype at 1.54μm is developed to measur...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
Systems, methods, and devices of the present invention enable airborne Doppler Wind LIDAR system mea...
This paper presents an overview of 2-micron laser transmitter development at NASA Langley Research C...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A pulsed 2-micron coherent Doppler lidar system at NASA Langley Research Center in Virginia flew on ...
The latest flight demonstration of Doppler Aerosol Wind Lidar (DAWN) at NASA Langley Research Center...
NASA Langley Research Center has a long history of developing 2-micron laser transmitter for wind se...
Abstract- The goal of this NASA Instrument Incubator Program (IIP)-2004 project is to take a signifi...
Systems, methods, and devices of the present invention enable post processing of airborne Doppler wi...
A pulsed CO2 Doppler Lidar, developed for airborne measurements of atmospheric wind fields, is descr...
An all-fiber airborne pulsed coherent Doppler lidar (CDL) prototype at 1.54μm is developed to measur...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
Systems, methods, and devices of the present invention enable airborne Doppler Wind LIDAR system mea...
This paper presents an overview of 2-micron laser transmitter development at NASA Langley Research C...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...