Digital Implementation of an Improved LTE Stream Cipher Snow-3G Based on Hyperchaotic PRNG

Author:

Madani Mahdi12ORCID,Benkhaddra Ilyas2,Tanougast Camel2,Chitroub Salim1,Sieler Loic2

Affiliation:

1. LISIC Laboratory, Electronics and Computer Science Faculty, University of Science and Technology of Houari Boumediene (USTHB), Algiers, Algeria

2. LCOMS, Universite de Lorraine, Metz, France

Abstract

SNOW-3G is a stream cipher used by the 3GPP standards as the core part of the confidentiality and integrity algorithms for UMTS and LTE networks. This paper proposes an enhancement of the regular SNOW-3G ciphering algorithm based on HC-PRNG. The proposed cipher scheme is based on hyperchaotic generator which is used as an additional layer to the SNOW-3G architecture to improve the randomness of its output keystream. The objective of this work is to achieve a high security strength of the regular SNOW-3G algorithm while maintaining its standardized properties. The originality of this new scheme is that it provides a good trade-off between good randomness properties, performance, and hardware resources. Numerical simulations, hardware digital implementation, and experimental results using Xilinx FPGA Virtex technology have demonstrated the feasibility and the efficiency of our secure solution while promising technique can be applied to secure the new generation mobile standards. Thorough analysis of statistical randomness is carried out demonstrating the improved statistical randomness properties of the new scheme compared to the standard SNOW-3G, while preserving its resistance against cryptanalytic attacks.

Publisher

Hindawi Limited

Subject

Computer Networks and Communications,Information Systems

Cited by 11 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. FPGA Implementation of Modified SNOW 3G Stream Ciphers Using Fast and Resource Efficient Substitution Box;IEEE Embedded Systems Letters;2023-12

2. Towards Secure and Efficient Multi-generation Cellular Communications: Multi-mode SNOW-3G/V ASIC and FPGA Implementations;Applied Reconfigurable Computing. Architectures, Tools, and Applications;2023

3. Implementation of a symmetric chaos-based cryptosystem for image security in real time;2022 IEEE 9th International Conference on Sciences of Electronics, Technologies of Information and Telecommunications (SETIT);2022-05-28

4. Enhanced design and hardware implementation of a chaos-based block cipher for image protection;Journal of Difference Equations and Applications;2022-04-30

5. A Novel SNOW3G-M Algorithm and Medical;International Journal of Online and Biomedical Engineering (iJOE);2022-03-08

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