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NASA NTRS · 19940025161

Decoder synchronization for deep space missions

Abstract

The Consultative Committee for Space Data Standards (CCSDS) recommends that space communication links employ a concatenated, error-correcting, channel-coding system in which the inner code is a convolutional (7,1/2) code and the outer code is a (255,223) Reed-Solomon code. The traditional implementation is to perform the node synchronization for the Viterbi decoder and the frame synchronization for the Reed-Solomon decoder as separate, sequential operations. This article discusses a unified synchronization technique that is required for deep space missions that have data rates and signal-to-noise ratios (SNR's) that are extremely low. This technique combines frame synchronization in the bit and symbol domains and traditional accumulated-metric growth techniques to establish a joint frame and node synchronization. A variation on this technique is used for the Galileo spacecraft on its Jupiter-bound mission.

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BibTeXRIS

Statman, J. I., Cheung, K.-M., Chauvin, T. H., Rabkin, J., Belongie, M. L.. 1994-02-15. Decoder synchronization for deep space missions. https://ntrs.nasa.gov/citations/19940025161

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