Zied Guitouni | Cryptography | Innovative Research Award

Innovative Research Award

Zied Guitouni — Faculty of Sciences of Monastir, Tunisia

Zied Guitouni
Affiliation Faculty of Sciences of Monastir
Country Tunisia
Scopus ID 24766321800
Documents 9
Citations 27
h-index 3
Subject Area Cryptography
Event Global Tech Excellence Awards
ORCID 0000-0002-5707-134X

Zied Guitouni is a researcher affiliated with the Faculty of Sciences of Monastir, Tunisia, whose research activity is centered on cryptography and security-oriented computing. His work addresses contemporary challenges involving blockchain, Internet of Things security, intrusion detection, medical image protection, and emerging quantum-inspired encryption approaches, reflecting an interdisciplinary direction within cybersecurity research. [1] [2] [3]

Abstract

Zied Guitouni’s research profile reflects a focused contribution to cryptography and cybersecurity, with applications spanning blockchain-enabled Internet of Things systems, smart-city intrusion detection, and medical image protection. His published work explores security architectures, lightweight machine-learning methods, and quantum chaotic techniques for addressing evolving digital threats. These studies connect cryptographic principles with practical requirements for connected infrastructures and sensitive information systems. The combination of security engineering, intelligent detection, blockchain technologies, and advanced encryption demonstrates a research direction responsive to emerging cybersecurity challenges. His publication record provides evidence of continuing engagement with applied security research and interdisciplinary technological development. [1] [2] [3]

Keywords

Cryptography; cybersecurity; blockchain; Internet of Things; intrusion detection; smart cities; medical image encryption; quantum chaos; information security; lightweight security systems; applied cryptography.

Introduction

Modern connected environments require security mechanisms capable of protecting distributed devices, digital infrastructures, and sensitive information against increasingly sophisticated threats. Guitouni’s research addresses these requirements through cryptographic engineering and cybersecurity applications involving blockchain, IoT, intelligent intrusion detection, and medical image encryption, linking theoretical security principles with practical technological contexts. [1] [2] [3]

Research Profile

The researcher’s profile is characterized by applied cryptography and cybersecurity studies addressing multiple digital environments. His work encompasses elliptic-curve cryptographic implementation, blockchain-based IoT security, neural-network-supported intrusion detection, and encryption techniques for medical imagery. This range indicates an interdisciplinary research orientation combining cryptographic methods, intelligent computing, network protection, and application-specific security requirements. [1] [2] [3]

Research Contributions

The reported contributions include advanced VLSI implementation of ECDSA for blockchain-oriented IoT applications, a lightweight feed-forward neural-network approach for smart-city intrusion detection, and quantum chaotic techniques for medical image encryption. Collectively, these studies investigate computational efficiency, network threat detection, and data confidentiality, demonstrating practical applications of cryptographic and security technologies. [1] [2] [3]

Publications

The publication record supplied for this recognition profile includes studies published in Springer journals covering blockchain-based IoT security, smart-city cybersecurity, and medical image encryption. The subjects demonstrate continuity around applied security, while the methodological approaches range from VLSI cryptographic implementation and neural-network intrusion detection to quantum chaotic encryption, reflecting diverse technical strategies. [1] [2] [3]

Research Impact

The potential impact of this research lies in its relevance to security-sensitive technological domains. Efficient cryptographic hardware can support constrained IoT environments, lightweight intrusion detection can contribute to smart-city protection, and advanced image encryption can strengthen confidentiality for medical information. These application areas position the work within important contemporary cybersecurity priorities. [1] [2] [3]

Award Suitability

The research profile is suitable for consideration for an Innovative Research Award because it demonstrates application-oriented work across several cybersecurity challenges. The combination of cryptographic hardware, intelligent intrusion detection, blockchain security, and advanced encryption illustrates technical breadth and innovation-oriented problem solving. The publications also provide identifiable scholarly evidence supporting the relevance of this research direction. [1] [2] [3]

Conclusion

Zied Guitouni’s documented research presents a coherent focus on cryptography and cybersecurity with applications in IoT, blockchain, smart cities, and medical information protection. His studies combine hardware implementation, machine learning, and advanced encryption techniques, establishing a multidisciplinary foundation for continued research addressing practical security challenges across emerging digital technologies. [1] [2] [3]

References

  1. Guitouni, Z. (2026). Advanced VLSI ECDSA design for real-time blockchain-based IoT system applications. Journal of Electrical Systems and Information Technology.
    https://link.springer.com/article/10.1007/s44291-026-00172-4
  2. Guitouni, Z. (2025). A lightweight FFNN-based intrusion detection system for smart city cybersecurity. Journal of Supercomputing.
    https://link.springer.com/article/10.1007/s11227-025-08031-x
  3. Guitouni, Z. (2025). Quantum chaotic techniques for medical image encryption in next-generation IoMT applications. Journal of Supercomputing.
    https://link.springer.com/article/10.1007/s11227-025-07574-3

Kafayat Tajudeen | Cryptography | Innovative Research Award

Innovative Research Award

Kafayat Tajudeen
Al-Hikmah University, Nigeria

                 Kafayat Tajudeen
Affiliation Al-Hikmah University
Country Nigeria
Scopus ID 58092099200
Documents 5
Citations 10
h-index 2
Subject Area Cryptography
Event Global Tech Excellence Awards
ORCID 0000-0002-9831-1741

The Innovative Research Award recognizes scholarly excellence demonstrated through impactful scientific publications, responsible research practices, and measurable academic contributions. Kafayat Tajudeen has developed research focused on cryptography and cybersecurity, contributing to secure communication technologies and intelligent network protection through peer-reviewed publications. [1]

Abstract

Kafayat Tajudeen’s research portfolio demonstrates continuing contributions to cryptography and cybersecurity through studies addressing encryption techniques, secure message transmission, and intelligent network attack detection. Her published work explores practical approaches for strengthening information security using advanced encryption standards and hybrid deep learning methodologies. Supported by peer-reviewed publications and indexed scholarly output, these contributions align with internationally recognized research standards and illustrate meaningful academic development within the broader field of information security while supporting innovation, reliability, privacy, and resilient digital communication systems. [1] [2]

Keywords

Cryptography, Cybersecurity, Advanced Encryption Standard, Deep Learning, Distributed Denial of Service, Internet of Things, Information Security, Secure Communication, Artificial Intelligence, Network Security.

Introduction

Cryptography remains fundamental for protecting digital information, ensuring confidentiality, authentication, and integrity across modern communication systems. Kafayat Tajudeen’s academic interests reflect contemporary cybersecurity challenges by investigating encryption technologies and intelligent security mechanisms designed to strengthen resilient computing environments and safeguard sensitive digital infrastructure. [1]

Research Profile

Affiliated with Al-Hikmah University, Kafayat Tajudeen has established a developing research profile within cryptography and cybersecurity. Her Scopus-indexed publications demonstrate scholarly engagement with secure computing technologies while reflecting measurable academic productivity through citations, collaborative research, and internationally accessible scientific dissemination. [3]

Research Contributions

Her research contributions include evaluating advanced encryption methods for enhanced message security and developing hybrid deep learning approaches for detecting user datagram protocol-based distributed denial of service attacks in Internet of Things environments. These investigations support secure, intelligent, and adaptive cybersecurity solutions. [1] [2]

Publications

The researcher’s publication record includes peer-reviewed studies published through internationally recognized academic publishers. These publications examine encryption algorithms, intelligent threat detection, and cybersecurity applications, demonstrating commitment to producing scientifically validated research addressing practical and emerging challenges in information security. [1] [2]

Research Impact

The available citation metrics indicate that the published research has attracted scholarly attention within the cybersecurity community. Continued citation growth, indexed publications, and practical relevance demonstrate an emerging academic impact while supporting future interdisciplinary investigations into secure digital communication and intelligent cyber defense. [3]

Award Suitability

The Innovative Research Award appropriately recognizes researchers demonstrating originality, scientific quality, and measurable scholarly influence. Based on published contributions in cryptography, indexed research output, and ongoing engagement with cybersecurity innovation, Kafayat Tajudeen satisfies important indicators commonly associated with academic research recognition. [1] [3]

Conclusion

Kafayat Tajudeen’s scholarly activities contribute to advancing cryptographic security and intelligent cybersecurity research. Through peer-reviewed publications, recognized indexing, and measurable academic performance, her work reflects sustained scientific engagement and supports continued innovation addressing contemporary information security challenges across academic and applied computing environments. [1] [3]

References

  1. Author(s). (2025). A systematic review on advanced encryption standard cryptography to enhance message security. Multimedia Tools and Applications. Springer.
    https://doi.org/10.1007/s11042-025-21041-4
  2. Author(s). (2026). Hybrid deep learning models for detecting user datagram protocol-based distributed denial of service attacks in Internet of Things networks. Discover Internet of Things. Springer.
    https://doi.org/10.1007/s43926-026-00305-x
  3. Elsevier. (n.d.). Scopus Author Profile: Kafayat Tajudeen. Author ID: 58092099200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58092099200