Salami Slicing Trellis for Synchronization Errors in DNA Coding

June 27, 2026 ยท Grace Period ยท + Add venue

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Authors Tsung-Han Wu, Joseph Swernofsky, Hsin-Po Wang arXiv ID 2606.28802 Category cs.IT: Information Theory Citations 0
Abstract
On top of substitution errors, DNA storage channels suffer from both insertions and deletions at the same time. It is therefore important to develop error-correcting codes with efficient encoders and decoders that can combat all three types of noise. This paper introduces the salami-slicing trellis, a decision-feedback trellis that computes bitwise posterior probabilities along each strand and is coupled with polar codes across strands. The decoder alternates between advancing the trellises by one position and polar-decoding the resulting cross-strand slice, feeding the decoded bits back to the trellises for the next position. Simulations suggest that the resulting coding scheme approaches the conjectured capacity of the substitution-insertion-deletion channel.
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