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Empowering power distribution: Unleashing the synergy of IoT and cloud computing for sustainable and efficient energy systems

R. ArulCentre for Smart Grid Technologies, School of Electrical Engineering, Vellore Institute of Technology, Chennai, 600127, Tamil Nadu, IndiaS. DhivyaSchool of Electrical Engineering, Vellore Institute of Technology, Chennai, 600127, Tamil Nadu, IndiaMohit BajajApplied Science Research Center, Applied Science Private University, Amman, 11937, JordanIssam DamajCardiff School of Technologies, Cardiff Metropolitan University, Cardiff, CF5 2YB, United KingdomRajkumar Singh RathoreCardiff School of Technologies, Cardiff Metropolitan University, Cardiff, CF5 2YB, United KingdomArvind R. SinghDepartment of Electrical Engineering, School of Physics and Electronic Engineering, Hanjiang Normal University, Hubei Shiyan, 442000, PR ChinaVojtěch BlažekENET Centre, VSB—Technical University of Ostrava, 708 00 Ostrava, Czech RepublicLukáš ProkopENET Centre, VSB—Technical University of Ostrava, 708 00 Ostrava, Czech Republic
2024en
ABI

Аннотация

This article gives an in-depth review of the integration of the Internet of Things (IoT) and cloud computing in power systems (PS), to improve power distribution sustainability and efficiency. IoT provides seamless communication throughout the electrical grid by leveraging modern Information and Communication Technology (ICT) and embedded technologies, ushering in an information revolution. The Internet of Energy (IoE) emphasizes the convergence of ICT and energy generation, highlighting IoT's disruptive potential in the electric power industry. Cloud computing, on the other hand, effectively handles data processing, storage, and computational resources. Cloud of Things (CoT), the merging of IoT with cloud computing, provides huge processing capabilities and quick access to computer resources, enabling novel applications and analytics in power distribution. The influence of IoT and cloud-based applications in the distributed generation and renewable energy industries is demonstrated via case studies and real-world scenarios. The introduction of new parameters and optimization strategies highlights the potential for future developments in power technology. To achieve smooth integration and effective resource utilization, proposals for additional research in electric cars and grid-to-vehicle technologies have been made. The integration of CoT into PS has an enormous influence, opening the door for increased efficiency, sustainability, and reliability in the energy sector, as shown by the study's overall findings. Future generations will advance thanks to the CoT, which presents exciting potential for a more eco-friendly and technologically sophisticated energy landscape.

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