Related Experiment Video
Updated: Jul 6, 2026

Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing
Published on: February 13, 2018
Rayleigh-Mie Doppler wind lidar for atmospheric measurements. II. Mie scattering effect, theory, and calibration
C Souprayen1, A Garnier, A Hertzog
1Service d'Aeronomie du Centre National de la Recherche Scientifique, Routes des Gatines, BP 3, 91371 Verrieres-Le-Buisson, France. C.Souprayen@damtp.cam.ac.uk
Abstract:
A theoretical and experimental study is conducted for the direct-detection Doppler Lidar developed by the Service d'Aéronomie du Centre National de la Recherche Scientifique. Thanks to a specific design, the double-edge technique that applies primarily to Rayleigh scattering can also be employed in presence of aerosols backscatter. We focus on a careful estimate of the particle-induced error on the wind measurements. With a theoretical model for the Fabry-Perot interferometer and two sets of calibration measurements, the true spectral properties of the interferometer and the calibration curves are recovered. Furthermore, the particle-induced error is estimated for varying values of the scattering ratio at 532 nm. When applied to real atmospheric signals, this error is shown to be negligible. A comparison between ancillary data and the wind and backscatter ratio as retrieved from the Doppler lidar signals confirms our estimate.
Related Concept Videos
Doppler Effect - II
Influence of Earth's Curvature and Atmospheric Refraction on Leveling
Application of Linearization and Approximation
Instrument Calibration
Analytical Balance Calibration
An analytical balance measures mass and requires regular calibration to...

