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A Secure and Efficient Image Encryption Algorithm Based on DNA Coding and Spatiotemporal Chaos

摘要


In this paper, an image encryption algorithm based on DNA random coding and random operation combined with chaotic map is proposed. In order to produce sequences with more chaotic characteristics, a new spatiotemporal chaotic system is proposed by employing the Tent-Sine system (TSS) in the coupled map lattice (CML). SHA-256 hash of the plain image is used to generate secret keys. The Lorenz Map, Logistic Map and TSS are applied to generate all parameters the proposed algorithm needs. In order to get the high randomness and overcome the limitations of DNA computing rules, encode the every rows of original image and key image with DNA rules respectively, which are randomly selected from eight encoding rules. Then, apply encoded original image to execute DNA operations with encoded key image row by row to obtain the transitional image and the one of the four DNA operations of every row is determined by logistic map; Finally, randomly decode the transitional image to gain the eventual encrypted image. experimental results demonstrate that the proposed algorithm have ability to resist typical attacks.

被引用紀錄


李其澧(2009)。矽鍺異質接面結構退火效應與奈米機械特性之研究〔碩士論文,國立交通大學〕。華藝線上圖書館。https://doi.org/10.6842/NCTU.2009.00154
Kuo, C. H. (2008). 用於干擾通道下的新奇渦輪等化系統 [master's thesis, National Tsing Hua University]. Airiti Library. https://www.airitilibrary.com/Article/Detail?DocID=U0016-2002201315050204

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