Abstract
In today’s digital environment, sensitive and personal images are transmitted over different social media applications over an insecure network. By considering the user’s privacy and security, their sensitive images have to be transferred in a secure manner. This work proposes a new colour image crypt architecture by utilizing the hyper Lorenz chaotic map. A new methodology random bit-flipping process is employed in the diffusion process to increase the security level of the cryptosystem. The developed architecture is the combination of R, G, and B channels confusion and random bit-level diffusion of each pixel. Experimental results and security analysis indicate that the developed model has the ability to resist statistical, differential, and exhaustive attacks and also achieves sufficient robustness.
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Acknowledgements
The Authors gratefully acknowledge the Department of Science and Technology, India for Fund for Improvement of S&T Infrastructure in Universities and Higher Educational Institutions (SR/FST/ETI-371/2014), (SR/FST/MSI-107/2015) and Tata Realty—IT City—SASTRA Srinivasa Ramanujan Research Cell of our University for the financial support extended to us in carrying out this research work.
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Rajendran, S., Doraipandian, M., Krithivasan, K., Sabapathi, R., Srinivasan, P. (2022). Hyper Chaos Random Bit-Flipping Diffusion-Based Colour Image Cryptosystem. In: Raj, J.S., Shi, Y., Pelusi, D., Balas, V.E. (eds) Intelligent Sustainable Systems. Lecture Notes in Networks and Systems, vol 458. Springer, Singapore. https://doi.org/10.1007/978-981-19-2894-9_59
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DOI: https://doi.org/10.1007/978-981-19-2894-9_59
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