Pre-correction adaptive optics performance for a 10 km laser link

Conference Paper (2019)
Author(s)

Rudolf Saathof (TNO)

Remco Den Breeje (TNO)

Wimar Klop (TNO)

Niek Doelman (TNO, Universiteit Leiden)

Thijs Moens (TNO)

Michael Gruber (TNO)

Tjeerd Russchenberg (TNO)

Federico Pettazzi (TNO)

Jet Human (TNO)

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Affiliation
External organisation
DOI related publication
https://doi.org/10.1117/12.2506849 Final published version
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Publication Year
2019
Language
English
Affiliation
External organisation
Article number
109101H
ISBN (electronic)
9781510624627
Event
Free-Space Laser Communications XXXI 2019 (2019-02-04 - 2019-02-06), San Francisco, United States
Downloads counter
279

Abstract

For the next generation of very high throughput communication satellites, free-space optical (FSO) communication between ground stations and geostationary telecommunication satellites is likely to replace conventional RF links. To mitigate atmospheric turbulence, TNO and DLR propose Adaptive Optics (AO) to apply uplink pre-correction. In order to demonstrate the feasibility of AO pre-correction an FSO link has been tested over a 10 km range. This paper shows that AO pre-correction is most advantageous for low point ahead angles (PAAs), as expected. In addition, an optimum AO precorrection performance is found at 16 AO modes for the experimental conditions. For the specific test site, tip-tilt precorrection accounted for 4.5 dB improvement in the link budget. Higher order AO modes accounted for another 1.5 dB improvement in the link budget. From these results it is concluded that AO pre-correction can effectively improve high-throughput optical feeder links.