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Encryption Algorithm Based on DNA Strand Displacement and DNA Sequence Operation

delete2021-04-01
delete17
PRE
AI
C
Chengye Zou
X
Xiaopeng Wei
张强 (Qiang Zhang)
周昌军 (Changjun Zhou) *
S
Shuang Zhou
DOI:10.1109/TNB.2021.3058399delete
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Abstract

Abstract

En 中文
DNA strand displacement is introduced in this study and used to construct an analog DNA strand displacement chaotic system based on six reaction modules in nanoscale size. The DNA strand displacement circuit is employed in encryption as a chaotic generator to produce chaotic sequences. In the encryption algorithm, we convert chaotic sequences to binary ones by comparing the concentration of signal DNA strand. Simulation results show that the encryption scheme is sensitive to the keys, and key space is large enough to resist the brute-force attacks, furthermore algorithm has a high capacity to resist statistic attack. Based on robustness analysis, our proposed encryption scheme is robust to the DNA strand displacement reaction rate control, noise and concentration detection to a certain extent.
Keywords:
DNA
Encryption
Catalysis
Chaotic communication
Chemicals
Degradation
Analog circuits
DNA strand displacement reaction
encryption algorithm
chaotic sequence
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Journal

IEEE Transactions on Nanobioscience cover
IEEE Transactions on Nanobioscience
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4.4
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A
Anyang Normal University
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Zhejiang Normal University
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Dalian University of Technology
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Chongqing Normal University
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