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Efficient Dynamic S-Box Generation Using Linear Trigonometric Transformation for Security Applications

Amjad Hussain ZahidSchool of Systems and Technology, University of Management and Technology, Lahore, PakistanLo’ai TawalbehDepartment of Computing and Cyber Security, Texas A&M University at San Antonio, San Antonio, TX, USAMusheer AhmadDepartment of Computer Engineering, Jamia Millia Islamia, New Delhi, IndiaAhmed AlkhayyatDepartment of Computer Technical Engineering, College of Technical Engineering, Islamic University, Najaf, IraqMalik Tahir HassanSchool of Systems and Technology, University of Management and Technology, Lahore, PakistanAtif ManzoorSchool of Systems and Technology, University of Management and Technology, Lahore, PakistanAlaa Kadhim FarhanDepartment of Computer Sciences, University of Technology, Baghdad, Iraq
2021en
ABI

Аннотация

Protection of data transmitted over the network from illegal access is one of the major challenges being posed by exponential growth of data in online digital communication. Modern cryptosystems assist in data sanctuary by utilizing substitution-boxes (S-boxes). This paper presents a modest and novel technique to erect dynamic and key dependent S-boxes with the help of a novel linear trigonometric transformation. A new optimization plan is also suggested to improvise the nonlinearity characteristic of the preliminary S-box generated through trigonometric transformation. The proposed technique has the competence to create significant quantity of cryptographic strong S-boxes with the help of projected scheme. A specimen S-box is procreated, and standard performance criteria is applied to appraise the cryptographic strength of the resultant S-box and other known S-boxes available in the literature. Comparative performance analyses validate the noteworthy contribution of the proposed scheme for the generation of dynamic and secure S-boxes. An image privacy preserving scheme based on the proposed S-box is also suggested to validate the fact that it holds strong candidature for modern cryptosystems to protect multimedia data.

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