Title: New intelligent strategy for encryption decisional support system
Authors: Salima Trichni; Fouzia Omary; Abdellah Idrissi; Mohammed Bougrine; Manar Abourezq
Addresses: Faculty of Sciences Mohammed V University In Rabat, Department of Computer Science, 4 Avenue Ibn Batouta, B.P. 1014, Rabat, 10106, Morocco ' Faculty of Sciences Mohammed V University In Rabat, Department of Computer Science, 4 Avenue Ibn Batouta, B.P. 1014, Rabat, 10106, Morocco ' Faculty of Sciences Mohammed V University In Rabat, Department of Computer Science, 4 Avenue Ibn Batouta, B.P. 1014, Rabat, 10106, Morocco ' Faculty of Sciences Mohammed V University In Rabat, Department of Computer Science, 4 Avenue Ibn Batouta, B.P. 1014, Rabat, 10106, Morocco ' Faculty of Sciences Mohammed V University In Rabat, Department of Computer Science, 4 Avenue Ibn Batouta, B.P. 1014, Rabat, 10106, Morocco
Abstract: Despite the exponential evolution of information technologies and IT infrastructure, IT security tools (including encryption) do not always guarantee the same level of security. One can find very powerful encryption systems for images but not necessarily for videos or literal texts. Our contribution is to achieve an intelligent encryption strategy for communication software, allowing the use of the most appropriate encryption system for the messages specificities, the infrastructure, and the destination platform. For this, we start with a classification of data to secure. Then, we establish a multidimensional data analysis through a Datawarehousse design in the star model. Moreover, in order to make the system intelligent, we populate the knowledge base with all the encryption results performed after each communication. Finally, we propose to apply the block nested loop (BNL) algorithm on ciphering algorithms skyline candidate to decide the one who meets most of the criteria to secure communication.
Keywords: IT security; cryptography; encryption; communication software; artificial intelligence; multidimensional data analysis; BNL; block nested loop; Skyline.
DOI: 10.1504/IJHPSA.2020.113678
International Journal of High Performance Systems Architecture, 2020 Vol.9 No.4, pp.173 - 181
Received: 21 Dec 2019
Accepted: 05 Mar 2020
Published online: 18 Mar 2021 *