D2Sim: A computational simulator for nanopore sequencing based DNA data storage

Loading...
Thumbnail Image
Date
2026-07-23
Authors
Sankar, Subhasiny
Yixin, Wang
Noor-A-Rahim, Md
Gunawan, Erry
Guan, Yong Liang
Poh, Chueh Loo
Journal Title
Journal ISSN
Volume Title
Publisher
Research Projects
Organizational Units
Journal Issue
Abstract
DNA data storage has gained significant attention because of its high storage density and durability. However, errors during the storage and reading processes compromise data integrity, prompting research into error correction strategies. Researchers have explored physical (data copies) and logical redundancy (added redundancy in error-correcting codes) to mitigate errors. Evaluating these designs and reconstruction methods typically involves time-consuming and costly trials. To streamline this process, we designed a computational channel simulator, namely D2Sim, for Nanopore sequencing-based DNA data storage. This simulator mimics real experiments, generating data with certain redundancy and errors at the receiver. Integrated with DeepSimulator, D2Sim outputs signals closely resembling actual signals of Nanopore-based DNA storage. Comparative analysis reveals that the proposed simulator yields 16.7% to 88.7% lower sample difference deviations than signals from DeepSimulator alone. This cost-effective and time-efficient tool facilitates the assessment of physical and logical redundancy for data reconstruction in DNA data storage without the need for real-time experiments.
Description
© 2026, IEEE. For the purpose of open availability, the author has applied a public copyright licence to the Author Accepted Manuscript arising from this submission to enable immediate repository dissemination.
Keywords
Bioinformatic tool , Biomolecular errors , Computational simulator , DNA data storage , Logical and sequencing redundancy , Random process , [ComputerScience] , Biotechnology , Genetics
Citation
Sankar, S, Yixin, W, Noor-A-Rahim, M, Gunawan, E, Guan, Y L & Poh, C L 2026, 'D2Sim: A computational simulator for nanopore sequencing based DNA data storage', IEEE Transactions on Computational Biology and Bioinformatics, pp. 1-12. https://doi.org/10.1109/TCBBIO.2026.3716589
Link to publisher’s version
Copyright
cc_by