Sequential Decoding of Multiple Traces Over the Syndrome Trellis for Synchronization Errors
Paper i proceeding, 2025

Standard decoding approaches for convolutional codes, such as the Viterbi and BCJR algorithms, entail significant complexity when correcting synchronization errors. The situation worsens when multiple received sequences should be jointly decoded, as in DNA storage. Previous work has attempted to address this via separate-BCJR decoding, i.e., combining the results of decoding each received sequence separately. Another attempt to reduce complexity adapted sequential decoders for use over channels with insertion and deletion errors. However, these decoding alternatives remain prohibitively expensive for high-rate convolutional codes. To address this, we adapt sequential decoders to decode multiple received sequences jointly over the syndrome trellis. For the short blocklength regime, this decoding strategy can outperform separate-BCJR decoding under certain channel conditions, in addition to reducing decoding complexity. To mitigate the occurrence of a decoding timeout, formally called erasure, we also extend this approach to work bidirectionally, i.e., deploying two independent stack decoders that simultaneously operate in the forward and backward directions.

Författare

Anisha Banerjee

Technische Universität München

Lorenz Welter

Technische Universität München

Alexandre Graell Amat

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

Antonia Wachter-Zeh

Technische Universität München

Eirik Rosnes

Simula UiB

ICASSP, IEEE International Conference on Acoustics, Speech and Signal Processing - Proceedings

15206149 (ISSN)

2025 IEEE International Conference on Acoustics, Speech, and Signal Processing, ICASSP 2025
Hyderabad, India,

Pålitlig och säker kodad kantberäkning

Vetenskapsrådet (VR) (2020-03687), 2021-01-01 -- 2024-12-31.

Ämneskategorier (SSIF 2025)

Telekommunikation

DOI

10.1109/ICASSP49660.2025.10889909

Mer information

Senast uppdaterat

2025-07-14