Presentation + Paper
26 October 2022 An autonomous and passive daytime air-turbulence monitor for FSOC link optimization
Maxime Lamotte, Frédéric Jabet
Author Affiliations +
Abstract
In the advent of Free-Space Optical Communications, laser links between feeder stations and satellites are foreseen to surpass radiofrequency (RF) in terms on low-latency, high bandwidth and reliable security thanks to a narrow angle of emission and possibility en encrypt communications with quantum keys. Because Earth’s atmosphere is subject to wind and temperature gradients, turbulence skews laser beams over divergent and random paths, eventually corrected with Adaptive Optics (AO). Demonstrators have shown need for gateway selection optimization based on turbulence monitoring, to reduce onboard telescope re-pointing manoeuvrers, link-power budget, data errors correction and handover times. To assess day-time atmosphere optical quality, Miratlas has developed an autonomous and passive daytime turbulence monitor based on sunlight scintillation. This so-called SHAdow BAnd Ranger (SHABAR) was designed with remote-site prospective analysis requirements as well as operational feeder station monitor. Design of this small footprint, durable and low-cost device is presented, along a preliminary result campaign obtained at various locations. Power-spectral densities and autocorrelations of sunlight scintillation showed a clear effect of lower atmosphere wind gusts, while higher-layers also produced low-frequency scintillation. Air refractive-index structure parameter, C2N (h) obtained from such scintillation measurements is presented. A Machine-Learning algorithm, fed by numerous environmental sensors embedded in our Integrated Sky Monitor (ISM) is foreseen to offer short-time turbulence prediction. Further experimental campaigns at reference site with calibrated instruments is expected later this year for commissioning of our turbulence profiler.
Conference Presentation
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Maxime Lamotte and Frédéric Jabet "An autonomous and passive daytime air-turbulence monitor for FSOC link optimization", Proc. SPIE 12266, Environmental Effects on Light Propagation and Adaptive Systems V, 1226602 (26 October 2022); https://doi.org/10.1117/12.2641627
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Scintillation

Turbulence

Sensors

Sun

Observatories

Satellites

Amplifiers

RELATED CONTENT

C DIMM an autonomous, outdoor and fixed seeing monitor...
Proceedings of SPIE (September 12 2021)
The hybrid Shack-Hartmann/G-SCIDAR instrument
Proceedings of SPIE (November 01 2007)
Atmospheric turbulence monitoring at DLR
Proceedings of SPIE (November 11 2004)
CELT site testing program
Proceedings of SPIE (January 30 2003)
Site survey for a large solar telescope
Proceedings of SPIE (August 25 1998)

Back to Top