2026· International Journal of Modern Innovations and Emerging Trends· Vol 9, pp. 26-38· 0 citations
TL;DR
The paper provides a holistic insight into 5G-powered industrial automation through an extensive literature review, comparative analysis, and well-calculated approach to future research by offering strategic solutions to the research issue.
Abstract
The field of industrial automation experiences a revolutionary evolution due to the combination of 5G communication technologies with the systems of cyber-physics, artificial intelligence (AI), and Industrial Internet of Things (IIoT). 5G will present unprecedented possibilities, such as increased mobile broadband (eMBB), ultra-reliable low-latency communication (URLLC), and massive machine-type communication (mMTC) all of which result in entirely new possibilities in smart factories, predictive maintenance, autonomous robotics, and real-time process control. The paper discusses the present situation, underlying technology, architectural needs, the latest innovations and obstacles in the development of fully automated 5G-powered industrial ecosystems. The deterministic communication, scalable density of devices, computational offloading based on mobile edge computing (MEC), and manufacturing flexibility are the most significant opportunities. Nevertheless, studies find that there are serious barriers that are impediments to it; cybersecurity threat, interoperability, spectrum management, physical propagation, and economic barricade of the industry. The paper provides a holistic insight into 5G-powered industrial automation through an extensive literature review, comparative analysis, and well-calculated approach to future research by offering strategic solutions to the research issue. The findings demonstrate the potential of the 5G in the system of mission-critical manufacturing, improving the values of latency, throughput and reliability in simulated models of the performance. At the end of the paper, the researcher, engineer and policy makers are provided with the insights in order to enhance sustainable, secure and scalable 5G-enhanced industrial automation systems.
Port automation has progressed from standalone mechanical devices to interconnected, data-driven systems that support global trade. This paper examines how port automation has grown, focusing on equipment systems such as quay cranes, Automated Guided Vehicles (AGVs), and Automated Stacking Cranes (ASCs) and other automated yard equipment. Early improvements boosted lifting capacity and reduced manual effort, while newer approaches integrate artificial intelligence (AI), Internet of Things (IoT) sensors, and digital twin simulations to coordinate equipment in real time. These advances have raised efficiency, lowered emissions, and improved safety. However, some obstacles remain. Port managers must solve cooperation challenges, data protocol differences, and cybersecurity risks. Research indicates that advanced autonomy, including reinforcement learning, dynamic scheduling, and AI-based condition monitoring, will be important to solve these problems. The sector also needs to make standards, which ensure that equipment from different managers can communicate easily. Advances in electrification and energy management can help achieve sustainability targets, including reduced carbon footprints and optimized resource consumption. By examining a combined bibliometric analysis, qualitative content coding, and term-frequency analysis, this study reviews current progress and outlines future directions and emphasizes solutions that account for technical, organizational, and social factors. This approach may help modern ports remain adaptable, reliable, and resilient in a rapidly shifting maritime environment.
Yihan Liu, Rauno Heikkilä· European Transport Research...· 0 citations
Results demonstrate that smart sensor-based systems outperform conventional sensing systems in efficiency, fault detection, responsiveness, energy savings, and data accuracy, making them a key enabler of Industry 4.0 and future autonomous engineering applications.
V. Sethi· International Journal of Mod...· 0 citations
The study concludes that although 5G provides the technological foundation for next-generation digital transformation, continued research is required to improve network security, intelligent resource allocation, sustainable deployment, and integration with future sixth-generation (6G) communication systems.
E. M. Tanuja, Basavaraj S. Pol· International Journal of Res...· 0 citations
The landscape of industrial communication systems is rapidly evolving, driven by the proliferation of Industrial IoT (IIoT) devices, increased automation, and the convergence of operational and information technologies. This evolution introduces greater complexity, with diverse requirements in latency, reliability, scalability, and mobility, calling for advanced planning and decision-support tools. In this work, we address the needs of IIoT applications requiring ultra-reliable low-latency communication and mobility support. Instead of relying on 5G ultra-reliable low-latency communications (URLLC), we thoroughly investigate an alternative option, less covered in the existing literature, based on the IETF 6TiSCH architecture and short-range communications. In particular, we propose Highly-Reliable Real-Time Scheduling for 6TiSCH (6HRRT), a novel algorithm designed for mobile IIoT scenarios. By combining intelligent resource allocation with optimized redundancy strategies, 6HRRT achieves reliability up to 99.999% and latencies of tens of milliseconds for applications with heterogeneous requirements. Simulation results show that 6HRRT consistently outperforms state-of-the-art 6TiSCH solutions, particularly under mixed workloads and stringent requirements, ensuring robust real-time performance in IIoT environments.
M. Pettorali, Francesca Righetti, Paolo Bellavista et al.· IEEE Open Journal of the Com...· 0 citations
Detailed analysis of smart manufacturing systems that utilize the IoT and automation technology indicates a high improvement in operational performance, predictive accuracy, and decision-making ability when compared to the traditional manufacturing system.
Aiko Yamamoto· International Journal of Mod...· 0 citations
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