Iterative Soft Decoding Algorithm for DNA Storage Using Quality Score and Redecoding
- Authors
- Jeong, Jaeho; Park, Hosung; Kwak, Hee-Youl; No, Jong-Seon; Jeon, Hahyeon; Lee, Jeong Wook; Kim, Jae-Won
- Issue Date
- Jan-2024
- Publisher
- Institute of Electrical and Electronics Engineers Inc.
- Keywords
- Codes; Decoding; DNA; DNA storage; Encoding; FASTQ file; fountain code; Iterative algorithms; Iterative decoding; iterative decoding; Luby transform code; oligo; quality score; Sequential analysis; soft decoding
- Citation
- IEEE Transactions on Nanobioscience, v.23, no.1, pp 1 - 1
- Pages
- 1
- Indexed
- SCIE
SCOPUS
- Journal Title
- IEEE Transactions on Nanobioscience
- Volume
- 23
- Number
- 1
- Start Page
- 1
- End Page
- 1
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/67741
- DOI
- 10.1109/TNB.2023.3284406
- ISSN
- 1536-1241
1558-2639
- Abstract
- Ever since deoxyribonucleic acid (DNA) was considered as a next-generation data-storage medium, lots of research efforts have been made to correct errors occurred during the synthesis, storage, and sequencing processes using error correcting codes (ECCs). Previous works on recovering the data from the sequenced DNA pool with errors have utilized hard decoding algorithms based on a majority decision rule. To improve the correction capability of ECCs and robustness of the DNA storage system, we propose a new iterative soft decoding algorithm, where soft information is obtained from FASTQ files and channel statistics. In particular, we propose a new formula for log-likelihood ratio (LLR) calculation using quality scores (Q-scores) and a redecoding method which may be suitable for the error correction and detection in the DNA sequencing area. Based on the widely adopted encoding scheme of the fountain code structure proposed by Erlich <italic>et al</italic>., we use three different sets of sequenced data to show consistency for the performance evaluation. The proposed soft decoding algorithm gives 2.3%~7.0% improvement of the reading number reduction compared to the state-of-the-art decoding method and it is shown that it can deal with erroneous sequenced oligo reads with insertion and deletion errors. IEEE
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