Title
Observation And Analysis Of Aero-Optic Effects On The Orca Laser Communication System
Keywords
Aero-optic boundary layer; Atmospheric turbulence; Fading; Free space optics; Optical communications; Power spectrum; Probability density; Scintillation
Abstract
In this paper we show evidence of aero-optic effects on the measured beacon beam as the gimbal angle of a nose-mounted turret changes from 0 to 90 degrees and greater with respect to the line of flight. Data from the beacon beam was collected with a new technology 3-aperture scintillometer over a 82km to 104km air-to-ground downlink during field testing of the ORCA system in Nevada in May 2009. In this paper we present data analysis on the impact of an aero-optic boundary layer on a laser link between an aircraft and a ground-based stationary node. Particularly we look at the impact of an aero-optic boundary layer on the mean, variance, scintillation, probability density function (PDF), power spectral density (PSD), and fading of the received irradiance. We find that the most compelling argument for the presence of strong aero-optic effects comes from calculating the PSD of the received beacon intensity. We also find the cumulative effect of the aero-optic boundary layer differs depending on the transmitted beam parameters, i.e. collimated or divergent. © 2011 SPIE.
Publication Date
6-29-2011
Publication Title
Proceedings of SPIE - The International Society for Optical Engineering
Volume
8038
Number of Pages
-
Document Type
Article; Proceedings Paper
Personal Identifier
scopus
DOI Link
https://doi.org/10.1117/12.887057
Copyright Status
Unknown
Socpus ID
79959540247 (Scopus)
Source API URL
https://api.elsevier.com/content/abstract/scopus_id/79959540247
STARS Citation
Wayne, David T.; Phillips, Ronald L.; Andrews, Larry C.; Leclerc, Troy; and Sauer, Paul, "Observation And Analysis Of Aero-Optic Effects On The Orca Laser Communication System" (2011). Scopus Export 2010-2014. 2497.
https://stars.library.ucf.edu/scopus2010/2497