Unformatted Digital Fiber-Optic Data Transmission for Radio Astronomy Front-Ends

ABSTRACT We report on the development of a prototype integrated receiver front-end that combines all conversions from RF to baseband, from analog to digital, and from copper to fiber into one compact assembly, with the necessary gain and stability suitable for radio astronomy applications. The empha...

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Veröffentlicht in:Publications of the Astronomical Society of the Pacific 2013-06, Vol.125 (928), p.695-704
Hauptverfasser: Morgan, Matthew A., Fisher, J. Richard, Castro, Jason J.
Format: Artikel
Sprache:eng
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Zusammenfassung:ABSTRACT We report on the development of a prototype integrated receiver front-end that combines all conversions from RF to baseband, from analog to digital, and from copper to fiber into one compact assembly, with the necessary gain and stability suitable for radio astronomy applications. The emphasis in this article is on a novel digital data link over optical fiber which requires no formatting in the front-end, greatly reducing the complexity, bulk, and power consumption of digital electronics inside the antenna, facilitating its integration with the analog components, and minimizing the self-generated radio-frequency interference (RFI) which could leak into the signal path. Management of the serial data link is performed entirely in the back-end based on the statistical properties of signals with a strong random noise component. In this way, the full benefits of precision and stability afforded by conventional digital data transmission are realized with far less overhead at the focal plane of a radio telescope.
ISSN:0004-6280
1538-3873
DOI:10.1086/671349