Ahmed Y. Mahmoud

Work place: Department of Information Technology, Al-Azhar University-Gaza, Gaza, Palestine

E-mail: ahmed@alazhar.edu.ps

Website:

Research Interests: Computer systems and computational processes, Information Security, Distributed Computing, Computational Geometry, Information-Theoretic Security, Discrete Mathematics

Biography

Ahmed Y. Mahmoud received a BSc. in Computer Science from Al-Zaytoonah University, Amman, Jordan in 1997, an MSc. in Applied Mathematics and Computer Science and PhD in Computer Engineering from Eastern Mediterranean University, North Cyprus, in 2001 and 2012, respectively. From 2001 to 2006 he was a Lecturer in the Computer Science Department at Al-Azhar University, Gaza Strip, Palestine. From September 2006 to September 2011 he was with the Computer Engineering Department at Eastern Mediterranean University, Famagusta, North Cyprus. Since January 2012 he has been an Assistant professor in the Information Technology Department at Al-Azhar University, Gaza Strip, Palestine. His research interests are in the areas of information security, discrete geometry, parallel programming, and distributed systems.

Author Articles
A Hill Cipher Modification Based on Eigenvalues Extension with Dynamic Key Size HCM-EXDKS

By Ahmed Y. Mahmoud Alexander G. Chefranov

DOI: https://doi.org/10.5815/ijcnis.2014.05.08, Pub. Date: 8 Apr. 2014

All the proposed Hill cipher modifications have been restricted to the use of dynamic keys only. In this paper, we propose an extension of Hill cipher modification based on eigenvalues HCM-EE, called HCM-EXDKS. The proposed extension generating dynamic encryption key matrix by exponentiation that is made efficiently with the help of eigenvalues, HCM-EXDKS introduces a new class of dynamic keys together with dynamically changing key size. Security of HCM-EXDKS is provided by the use of a large number of dynamic keys with variable size. The proposed extension is more effective in the encryption quality of RGB images than HCM-EE and Hill cipher-known modifications in the case of images with large single colour areas and slightly more effective otherwise. HCM-EXDKS almost has the same encryption time as HCM-EE, and HCM-HMAC. HCM-EXDKS is two times faster than HCM-H, having the best encryption quality among Hill cipher modifications compared versus HCM-EXDKS.

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