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Mohammed D. Taha muhammed84@uomustansiriyah.edu.iq
Khalid A. Hussein dr.khalid.ali68@gmail.com


Abstract

In the era of data-driven applications and resource-constrained devices, the need for lightweight algorithms has become increasingly important. Lightweight algorithms refer to computational techniques that strike a balance between efficiency and resource utilization, making them well-suited for low-power devices, embedded systems, and scenarios with limited computational capabilities. For the new encryption method PRESENT, which was put forth in 2007, S-box directly affects the algorithm's security, whereas the p-layer mostly functions as a confusing factor during the encryption process. This paper provides a brief explanation of the PRESENT algorithm's operation and suggests an enhanced S-box and p-layer to address the issue that the main PRESENT S-box and P-layer have an anti-fixed point. The random generate of S-boxes and P-layers for PRESENT algorithms using 6D chaotic systems to generate 10 new S-boxes and 10 new P-layers. Finally, the security analysis has been completed, and the results indicate that the chaos S-box and P-layer are better able to with stand differential attacks and linear assaults and are suitable for protecting sensitive data.

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How to Cite
Taha, M. D., & Hussein, K. A. (2023). Generation S-box and P-layer For PRESENT Algorithm Based On 6D Hyper Chaotic System. Al-Kitab Journal for Pure Sciences, 7(01), 48–56. https://doi.org/10.32441/kjps.07.01.p5
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