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Active phase correction using a VCSEL for clock tones transmitted along a 24 km optical fibre link

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SAIP2015

Contribution ID:363 Type:Poster Presentation

Active phase correction using a VCSEL for clock tones transmitted along a 24 km optical fibre link

Wednesday, 1 July 2015 16:10 (1h 50m)

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Abstract- Africa, together with Australia will host the world’s larger radio telescope, the Square Kilometre Ar- ray (SKA). The combined surface area of the dishes or telescopes within the SKA equates one million square metres. Stable clock tones are essential for time stamping the received data and for driving the digitizers located at the individual antennae. Furthermore the dissemination of high precision, stable clock tones via optical fibre from the principle processing station to each dish is a primary requirement for the SKA. Temper- ature variations and vibrations give rise to temporal changes along an optical fibre link. These factors result in the random variations of optical path and refractive index properties of the optical fibre. In this paper, an active phase compensation scheme based on real time phase correction is proposed. This technique exploits the wavelength tuneability of a 4.25 Gbps vertical cavity surface emitting laser (VCSEL), along with the inher- ent chromatic dispersion properties of the fibre. The fundamental principle for phase delay correction up to 1702.77 ps is proposed, along a 24 km G.652 single mode optical fibre, by tuning the VCSEL across a 3.95 nm wavelength range. The active phase correction occurred within the lower frequency region of the X-band (8 – 14.5 GHz) around the 1550 nm transmission region.

Apply to be<br> considered for a student <br> &nbsp; award (Yes / No)?

Yes

Level for award<br>&nbsp;(Hons, MSc, <br> &nbsp; PhD, N/A)?

PhD

Main supervisor (name and email)<br>and his / her institution

Prof Tim Gibbon; tim.gibbon@nmmu.ac.za NMMU

Would you like to <br> submit a short paper <br> for the Conference <br> Pro- ceedings (Yes / No)?

No

(2)

Please indicate whether<br>this abstract may be<br>published online<br>(Yes / No)

No

Primary author: Mr WASSIN, Shukree (NMMU)

Co-authors: Prof. LEITCH, Andrew (NMMU); Dr GAMATHAM, Romeo (Nelson Mandela Metropolitan Uni- versity); Prof. GIBBON, Timothy (NMMU Physics Department)

Presenter: Mr WASSIN, Shukree (NMMU) Session Classification: Poster2

Track Classification: Track F - Applied Physics

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