Deciphering an RGB color image cryptosystem based on Choquet fuzzy integral

For the purpose of designing better color image cryptosystems, it is necessary to perform a mathematically rigorous security analysis for the existing ones. In this study, a Choquet fuzzy integral-based color image cryptosystem with shift–diffusion architecture is cryptanalyzed. Firstly, it is demon...

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Veröffentlicht in:Neural computing & applications 2017, Vol.28 (1), p.165-169
Hauptverfasser: Zhang, Yushu, Wen, Wenying, Wu, Yongfei, Zhang, Rui, Chen, Jun-xin, He, Xing
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Sprache:eng
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Zusammenfassung:For the purpose of designing better color image cryptosystems, it is necessary to perform a mathematically rigorous security analysis for the existing ones. In this study, a Choquet fuzzy integral-based color image cryptosystem with shift–diffusion architecture is cryptanalyzed. Firstly, it is demonstrated that the color image cryptosystem is irreversible, since the encryption algorithm cannot be decrypted correctly. Meanwhile, a simple improvement is presented to guarantee the reversibility. Moreover, a cryptanalysis of the improved scheme is proposed and results show the improved color image cryptosystem can be broken by a known plain/cipher image pair. The shift–diffusion architecture should alter the external key every time for security consideration.
ISSN:0941-0643
1433-3058
DOI:10.1007/s00521-015-2045-2