Index-Based Concatenated Codes for the Multi-Draw DNA Storage Channel
Paper i proceeding, 2023

We consider error-correcting coding for DNA-based storage. We model the DNA storage channel as a multi-draw IDS channel where the input data is chunked into M short DNA strands, which are copied a random number of times, and the channel outputs a random selection of N noisy DNA strands. The retrieved DNA strands are prone to insertion, deletion, and substitution (IDS) errors. We propose an index-based concatenated coding scheme consisting of the concatenation of an outer code, an index code, and an inner synchronization code, where the latter two tackle IDS errors. We further propose a mismatched joint index-synchronization code maximum a posteriori probability decoder with optional clustering to infer symbolwise a posteriori probabilities for the outer decoder. We compute achievable information rates for the outer code and present Monte-Carlo simulations for information-outage probabilities and frame error rates on synthetic and experimental data, respectively.

Författare

Lorenz Welter

Technische Universität München

Issam Maarouf

Simula UiB

Andreas Lenz

Technische Universität München

Antonia Wachter-Zeh

Technische Universität München

Eirik Rosnes

Simula UiB

Alexandre Graell I Amat

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

2023 IEEE Information Theory Workshop, ITW 2023

383-388
9798350301496 (ISBN)

2023 IEEE Information Theory Workshop, ITW 2023
Saint-Malo, France,

Pålitlig och säker kodad kantberäkning

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

Ämneskategorier

Telekommunikation

DOI

10.1109/ITW55543.2023.10161631

Mer information

Senast uppdaterat

2024-01-03