Please use this identifier to cite or link to this item: http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/31802
Title: Comparative Evaluation of AES, Camellia, and CLEFIA for Lightweight Environments: A Post-2023 Systematic Literature Review and Meta-Analysis
Authors: OJENIYI, Joseph Adebayo
FASOLA, Olusanjo Olugbemi
ONYEABOR, Grace Amina
ABDULSALAM, A.
EMMANUEL, I. O.
BABA, S. U.
JIYA, J. B.
Keywords: Proof Construction, Procedural Fluency, Undergraduate Mathematics Majors, APOS Theory, Scaffol
Issue Date: Mar-2026
Publisher: Journal of Behavioural Informatics, Digital Humanities and Development Research
Series/Report no.: Vol 12, No 1, March , 2026 Series;
Abstract: The rapid proliferation of resource-constrained Internet of Things (IoT) devices, embedded sensors, and edge computing platforms has intensified the demand for cryptographic primitives that strike a balance between security and stringent hardware and energy constraints. This paper presents a post-2023 systematic literature review and meta-analysis of three standardized block ciphers: the Advanced Encryption Standard (AES), Camellia, and CLEFIA, with a focus on their adaptation to lightweight environments. Drawing on Scopus-indexed research from 2021–2024, we evaluate architectural innovations, hardware/software optimizations, side-channel countermeasures, and quantum-resilience considerations. Our analysis demonstrates that while AES dominates in hardware-accelerated and certification-driven environments, CLEFIA is most efficient in ultra-constrained hardware, and Camellia provides a balanced solution for mid-range systems. Recent developments, including RISC-V cryptographic extensions and machine learningassisted cryptanalysis, have reshaped performance and security expectations. Based on these findings, we propose a decision framework for cipher selection tailored to specific resource, energy, and certification constraints.
URI: http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/31802
Appears in Collections:Cyber Security Science

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