Aug 2026· Journal of Computational and Experimental Science· Vol 1, pp. 20-44· 0 citations· 122 references
TL;DR
The ways in which artificial intelligence, blockchain technology, edge computing, and Zero Trust Architecture will transform IoT security paradigms are examined, which will reveal long-standing issues such as resource limitations, device heterogeneity, and scaling challenges.
Abstract
Internet of Things (IoT) has become a new paradigm that combines physical devices with computing and networking features to form intelligent systems that can accomplish their tasks with minimal human interaction. It is estimated that by 2030, there will be more than 30 billion interconnected IoT devices, which will transfer more than 40 zettabytes of data each year. Nevertheless, this exponential increase has brought surprising cybersecurity issues, and recent evaluations show that over 70% of IoT devices are susceptible to hacking. This review examines the complex security environment of IoT ecosystems, evaluates vulnerabilities at each layer of architecture, explores new threat vectors, and assesses new defense solutions. This paper introduces a systematic review of IoT security issues based on a five-layer architecture and specifically focuses on the vulnerabilities of the network and application layers. It examines the ways in which artificial intelligence, blockchain technology, edge computing, and Zero Trust Architecture will transform IoT security paradigms. This review helps reveal long-standing issues such as resource limitations, device heterogeneity, and scaling challenges through the analysis of actual attack cases and defenses in the field of smart healthcare, industrial IoT, smart cities, and other vital infrastructures. Recommendations on future research directions are then given at the end of the paper with an emphasis on quantum-resistant cryptography, 6G network security, and standardized security frameworks required to construct resilient IoT ecosystems.
It is argued that securing the IoT ecosystem requires sustained, coordinated effort from manufacturers, regulators and end-users, and where current technological and regulatory responses fall short of that goal is identified.
K. Curran, J. Kyle, Lovepreet Singh· Recent Progress in Science a...· 0 citations
A thorough study of 41 peer-reviewed research papers from January 2018 through May 2025 revealed the current state of security vulnerabilities and resilience strategies in healthcare IoT systems and provides a comprehensive analysis of security threats at the device, network, and application levels.
M. R. M. Hanan, M. J. A. Sabani· Sri Lankan Journal of Techno...· 0 citations
The paper is a systematic and multifaceted review of the new trends in cyber-physical security of smart factories, and looks at the threat landscapes, attack vectors, architecture weaknesses, and intersection of the information technology (IT) and operational technology (OT) worlds.
Hiroshi Tanaka, Yuki Nakamura· International Journal of Mod...· 0 citations
Cloud computing has quietly become part and parcel of modern digital infrastructure. It supports a wide range of Internet of Things (IoT), enterprise, and web applications. However, as they become more prevalent, cloud environments are becoming a prime target for advanced cyberattacks such as Distributed Denial-of-Service (DDoS), Advanced Persistent Threats (APTs), phishing, and privacy-related attacks. This paper presents a structured review of recent advances in cloud cybersecurity, based on peer-reviewed studies published in scientific databases between 2022 and 2025. The review highlights new defense technologies like artificial intelligence (AI), deep learning (DL), cloud-edge collaborative security, privacy-preserving methods, blockchain-based trust management, and post-quantum cryptography. The reviewed studies are compared and contrasted to identify trends, strengths, limitations, and gaps in securing cloud computing environments. The results show a clear shift from signature-based security to intelligent, adaptive, and decentralized security architectures that offer better detection precision, faster response, and stronger privacy protection. This review provides an overview of recent advances. It summarizes existing research gaps and directions for future work to achieve secure and resilient cloud services.
Ahmed Thamer Ahmed· Bilad Alrafidain Journal for...· 0 citations
Overall, this review demonstrates that blockchain-based cybersecurity frameworks provide a secure, transparent, and resilient foundation for protecting smart digital environments against increasingly sophisticated cyber threats while supporting trustworthy and scalable digital transformation.
M. Kayla, Crispinus Ode, Marion Sanaipei· The Eastasouth Journal of In...· 0 citations
A conceptual model of an AI-based adaptive cybersecurity system for IoTs, designed to utilise edge intelligence, federated learning, and continuous feedback mechanisms to detect and respond dynamically to potential threats is proposed.
Hareshwar Prasad· Journal of Intelligent Decis...· 0 citations
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