4.6 Article

A Novel Double-Image Encryption Algorithm Based on Rossler Hyperchaotic System and Compressive Sensing

期刊

IEEE ACCESS
卷 9, 期 -, 页码 41704-41716

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/ACCESS.2021.3065453

关键词

Encryption; Image coding; Ciphers; Sparse matrices; Compressed sensing; Matching pursuit algorithms; Licenses; Double-image encryption; Rossler system; compressive sensing; Josephus confusion

资金

  1. National Natural Science Foundation of China [61701043, 41874140]
  2. Shaanxi Province Science and Technology Key Research Program [2019GY-070]
  3. Shaanxi Province Science and Technology Program [2020JM-220, 2020JQ-351]
  4. Fundamental Research Funds for the Central Universities of China [300102240205]

向作者/读者索取更多资源

This paper proposes a novel double-image compression-encryption algorithm by combining Rossler hyperchaos and compressive sensing. The encrypted images are generated through various encryption methods, achieving high transmission efficiency and ensuring decryption quality.
In this paper, a novel double-image compression-encryption algorithm is proposed by combining Rossler hyperchaos and compressive sensing. In the proposed scheme, the sparse matrixes obtained by performing two-dimensional discrete wavelet transform on two plain images are first scrambled and compressed by index confusion and compressive sensing. Next, the compressed matrixes are linearly quantized, and then variable step length Josephus confusion and bitwise exclusive-OR operation are performed on them. The final noise-like cipher image is generated by hiding half of the encrypted image into the alpha channel of the other half of encrypted image. In order to realize One cipher image corresponds to one key, a novel key generation mechanism is designed. Finally, the simulation analyses indicate that the proposed double-image encryption scheme has high transmission efficiency. Meanwhile, the average local information entropy of the cipher image is about 0.902 and the decryption quality is as high as 30 dB.

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