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Double-image compression and encryption algorithm based on co-sparse representation and random pixel exchanging
DOI:10.1016/j.optlaseng.2018.05.014.png)
摘要
En 中文
To enhance the confidentiality and the robustness of double image encryption algorithms, a novel double-image compression-encryption algorithm is proposed by combining co-sparse representation with random pixel exchanging. Firstly, two scrambled plaintext images are expressed by the co-sparse analysis model with different row-scrambled basis matrices while the co-sparse representations could be regarded as the intermediate ciphertext. Subsequently, the co-sparse representations are compressed and encrypted concurrently by compressive sensing. Furthermore, the corresponding measurements obtained are processed by the random pixel exchanging operator and the Arnold transform. Finally, the corresponding results are combined into an enlarged image and then the resulting image is re-encrypted by the discrete fractional angular transform to improve the security of the whole algorithm. A series of numerical simulations are carried out to show the security performance of the proposed double-image compression and encryption algorithm.
Keyword:
Image encryption
Co-sparse representation
Compressive sensing
Pixel scrambling
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期刊
IF:
3.7
论文数:
7.2K
被引数:
1.7W
机构
引用论文
Secret shared multiple-image encryption based on row scanning compressive ghost imaging and phase retrieval in the Fresnel domain基于菲涅耳域行扫描压缩重影成像和相位恢复的秘密共享多图像加密
Image encryption based on three-dimensional bit matrix permutation基于三维位矩阵置换的图像加密
SIGNAL PROCESSING
IF3.6

