Index-Based Concatenated Codes for the Multi-Draw DNA Storage Channel
Paper in 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.

Author

Lorenz Welter

Technical University of Munich

Issam Maarouf

Simula UiB

Andreas Lenz

Technical University of Munich

Antonia Wachter-Zeh

Technical University of Munich

Eirik Rosnes

Simula UiB

Alexandre Graell I Amat

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

2023 IEEE Information Theory Workshop, ITW 2023

383-388
9798350301496 (ISBN)

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

Reliable and Secure Coded Edge Computing

Swedish Research Council (VR) (2020-03687), 2021-01-01 -- 2024-12-31.

Subject Categories

Telecommunications

DOI

10.1109/ITW55543.2023.10161631

More information

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1/3/2024 9