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Efficient and Explicit Balanced Primer Codes
Conference proceeding

Efficient and Explicit Balanced Primer Codes

Yeow Meng Chee, Han Mao Kiah, Hengjia Wei and IEEE
2019 IEEE INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY (ISIT), Vol.2019-, pp.91-95
IEEE International Symposium on Information Theory
01/01/2019

Abstract

Computer Science Computer Science, Information Systems Computer Science, Theory & Methods Science & Technology Technology
To equip DNA-based data storage with random-access capabilities, Yazdi et al. (2018) prepended DNA strands with specially chosen address sequences called primers and provided certain design criteria for these primers. We provide explicit constructions of error-correcting codes that are suitable as primer addresses and equip these constructions with efficient encoding algorithms. Specifically, our constructions take cyclic or linear codes as inputs and produce sets of primers with similar error-correcting capabilities. Using certain classes of BCH codes, we obtain infinite families of primer sets of length n, minimum distance d with (d + 1) log(4) n + O(1) redundant symbols. Our techniques involve reversible cyclic codes (1964), an encoding method of Tavares et al. (1971) and Knuth's balancing technique (1986). In our investigation, we also construct efficient and explicit binary balanced error-correcting codes.

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