Open Access
| Issue |
EPJ Web Conf.
Volume 344, 2025
AI-Integrated Physics, Technology, and Engineering Conference (AIPTEC 2025)
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|---|---|---|
| Article Number | 01006 | |
| Number of page(s) | 8 | |
| Section | AI-Integrated Physics, Technology, and Engineering | |
| DOI | https://doi.org/10.1051/epjconf/202534401006 | |
| Published online | 22 December 2025 | |
- A. Amin, N. Alvi, M. Irfan, M. Abdullah, & H. Manzoor, Design of a Low‐Cost Efficient IoT Based SCADA System for Automating Different Textile Machines and Controllers for Central Monitoring. The Journal of Engineering. 1 (2025). https://doi.org/10.1049/tje2.70089 [Google Scholar]
- R. D. Handayani, Z. Jamal, M. Alkahfiansyah, L. Rosmalia, N. H. Sudibyo, and R. Herwanto, Intelligent and Secure Package Receiver System Utilizing Internet of Things (IoT) Technology. Vokasi Unesa Bull. Eng. Technol. Appl. Sci. 2, 3, 581–592 (2025). https://doi.org/10.26740/vubeta.v2i3.38254 [Google Scholar]
- M. Sheba, D. Mansour, & N. Abbasy, A New Low‐ Cost and Low‐Power Industrial Internet of Things Infrastructure for Effective Integration of Distributed and Isolated Systems with Smart Grids. IET Generation, Transmission & Distribution. 17, 20, 4554–4573 (2023). https://doi.org/10.1049/gtd2.12951 [Google Scholar]
- A. M. Kida, M. Z. Ahmed, A. H. Alkali, J. Usman, and A. H. A. Hashim, Real-Time Energy Demand Forecasting and Adaptive Demand Response Optimization for IoT-Enabled Smart Grids. Vokasi Unesa Bull. Eng. Technol. Appl. Sci. 2, 2, 366–375 (2025). https://doi.org/10.26740/vubeta.v2i2.36818 [Google Scholar]
- I. Mehamud, M. Björling, P. Marklund, & Y. Shi, Durable Self‐Powered Wireless IoT Machine Condition Monitoring System Based on an Auto‐ Switching Non‐Contact Centrifugal TENG. Advanced Materials Technologies. 10, 8 (2024). https://doi.org/10.1002/admt.202401420 [Google Scholar]
- V. Krishnan, K. Sandepudi, & S. Gazal, An Optimised System for Energy Monitoring and Data Acquisition in Substations/Domestic Applications using IoT. E3S Web of Conferences. 87, 01001 (2019). https://doi.org/10.1051/e3sconf/20198701001 [Google Scholar]
- H. Prastyo, A. Budijanto, & S. Winardi, Measurement of Electrical Parameters on IoT- Based Main Generators for Safe Operational Feasibility. IJEEIT: International Journal of Electrical Engineering and Information Technology. 7, 1, 41–45 (2024). https://doi.org/10.29138/ijeeit.v7i1.2703 [Google Scholar]
- Y. Liu, X. He, Y. He, D. Zhang, H. Chen, & J. Fu, Wind Tunnel Measurements on the Effects of Leading Edge Geometry on Surface Pressures and Wake Flow of Finite Blunt Plate. Measurement. 218, 113066 (2023). https://doi.org/10.1016/j.measurement.2023.11306 6. [Google Scholar]
- Md. Yaseen, Md. Masud Rana, Md. Rabiul Islam, and Md. Mostafizur Rahman, IoT Based Condition Monitoring of Generators and Predictive Maintenance. 2nd International Conference on Electrical and Electronic Systems Engineering (ICEESE). 1–4 (2017). https://doi.org/10.1109/CESYS.2017.8321176 [Google Scholar]
- R. Delfianti, V. A. Tazayul, B. Mustaqim, F. Nusyura, and C. Harsito, Internet of Things (IoT) Based Electrical Power Monitoring System for Solar Power Plants Using Telegram Application. Vokasi Unesa Bull. Eng. Technol. Appl. Sci. 2, 3, 428–443 (2025). https://doi.org/10.26740/vubeta.v2i3.39405 [Google Scholar]
- A. Sneineh and A. Shabaneh, Design of a Smart Hydroponics Monitoring System using an ESP32 Microcontroller and the Internet of Things. MethodsX. 11, 102401 (2023). https://doi.org/10.1016/j.mex.2023.102401. [Google Scholar]
- W. Dong, X. Zhang, G. Yao, J. Lei, & Z. Liu, Optimized Operation Method for AC-DC Hybrid Microgrid Considering Dynamic Efficiency and Maximum Absorption Power of Battery. 2022 International Conference on Informatics, Networking and Computing (ICINC). 2022 (2022). https://doi.org/10.1109/icinc58035.2022.00028. [Google Scholar]
- H. Lee, D. Lee, & J. Kim, Automating Power- Increase Operation for Small Modular Reactors Based on Task Analysis with Proximal Policy Optimization. Nuclear Engineering and Technology. 103767 (2025). https://doi.org/10.1016/j.net.2025.103767 [Google Scholar]
- F. Pereira, A. Melani, F. Kashiwagi, T. Rosa, U. Santos, & G. Souza, Imperfect Preventive Maintenance Optimization with Variable Age Reduction Factor and Independent Intervention Level. Applied Sciences. 13, 18, 10210 (2023). https://doi.org/10.3390/app131810210 [Google Scholar]
- M. Li and Y. Ma, Parameter Identification of DC Motor based on Compound Least Square Method. IEEE 5th Information Technology and Mechatronics Engineering Conference (ITOEC). 1107–1111 (2020). https://doi.org/10.1109/itoec49072.2020.9141652 [Google Scholar]
- Y. Zheng, R. Xie, T. Lin, X. Chen, X. Mao, & Y. Zhang, A Family of Hybrid Topologies for Efficient Constant-Current and Constant-Voltage Output of Magnetically Coupled Wireless Power Transfer Systems. World Electric Vehicle Journal. 15, 12, 578 (2024). https://doi.org/10.3390/wevj15120578 [Google Scholar]
- G. Popov, K. Klimentov, & B. Kostov, Impact of the Method of Air Suction on the Energy Efficiency of Fan Systems. 8th International Conference on Energy Efficiency and Agricultural Engineering (EE&AE). (2022). https://doi.org/10.1109/eeae53789.2022.9831374 [Google Scholar]
- G. Ivanova and I. Donev, Experimental Study of the Operational Energy Efficiency Index EEOI in Passenger Ships. 12th Electrical Engineering Faculty Conference (BulEF). (2020). https://doi.org/10.1109/bulef51036.2020.9326063 [Google Scholar]
- Y. Wang, J. Yang, X. Bai, Y. Bai, X. Yuan, S. He et al,Multi-Parameter Coupling Optimization Study on Three-Zone Synergistic Efficiency Enhancement Pattern for Wet Cooling Towers. Applied Thermal Engineering. 278, 127286 (2025). https://doi.org/10.1016/j.applthermaleng.2025.127 286 [Google Scholar]
- D. Santos and J. Ferreira, IoT Power Monitoring System for Smart Environments. Sustainability. 11, 19, 5355 (2019). https://doi.org/10.3390/su11195355 [Google Scholar]
- H. Tsai, L. Truong, & W. Hsieh, Design and Evaluation of Wireless Power Monitoring IoT System for AC Appliances. Energies. 16, 1, 163 (2022). https://doi.org/10.3390/en16010163 [Google Scholar]
- X. Lyu and K. Liu, Managing Basic Data Quality for Electronic Resource. 5th International Conference on Information Science and Education (ICISE-IE). 558–563 (2024). https://doi.org/10.1109/icise- ie64355.2024.11025452 [Google Scholar]
- P. Tripathi and K. Chatterjee, Real-Time Implementation of Ring Based Saturated Core Fault Current Limiter to Improve Fault Ride Through Capability of DFIG System. International Journal of Electrical Power & Energy Systems. 131, 107040 (2021). https://doi.org/10.1016/j.ijepes.2021.107040 [Google Scholar]
- M. Beri, B. Kumar, S. Tiwari, N. Sharma, H. Vashishtya, & P. Chaudhary, IoT Based Health Monitoring System Built on ESP32. 2nd International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE). 454–458 (2022). https://doi.org/10.1109/icacite53722.2022.982352 8 [Google Scholar]
- H. Mohan, K. Shukla, Y. Goya, S. Amanzholova, & A. Nessibely, IoT-Based Real-Time Monitoring and Control System for Tomato Cultivation. Procedia Computer Science. 241, 433–438 (2024). https://doi.org/10.1016/j.procs.2024.08.060 [Google Scholar]
- M. Hossain and M. Hassan, Smart Energy Meter with Real Time Monitoring System. 13th International Conference on Electrical and Computer Engineering (ICECE). 761–766 (2024). https://doi.org/10.1109/icece64886.2024.11024970 [Google Scholar]
- B. Krishnaveni, S. Saravanan, B. Sathwik, B. Pragna, & A. Vijaykumar, IoT-Enabled Power Factor Monitoring and Correction with PZEM Integration. IEEE Third International Conference on Power Electronics, Intelligent Control and Energy Systems (ICPEICES). 885–890 (2024). https://doi.org/10.1109/icpeices62430.2024.10719 125 [Google Scholar]
- M. Karpagam, S. Sahana, S. Sivadharini, & S. Soundhariyasri, Smart Energy Meter and Monitoring System using Internet of Things (IoT). International Conference on Intelligent Data Communication Technologies and Internet of Things (IDCIoT). 2023, 75–80 (2023). https://doi.org/10.1109/idciot56793.2023.1005354 1 [Google Scholar]
- N. Abekiri, A. Rachdy, M. Ajaamoum, B. Nassiri, L. Elmahni, & Y. Oubail, Platform for Hands-On Remote Labs Based on the ESP32 and Node-Red. Scientific African. 19, e01502 (2023). https://doi.org/10.1016/j.sciaf.2022.e01502 [Google Scholar]
- M. Tahir, R. Enam, S. Mustafa, & R. Javed, EMAS: Environment Monitoring and Smart Alert System for Internet of Things (IoT). Global Conference on Wireless and Optical Technologies (GCWOT). 1–4 (2020). https://doi.org/10.1109/gcwot49901.2020.9391595 [Google Scholar]
- B. Jyothi, C. Gompa, C. Vajrapu, R. Matchetti, A. Yadla, J. Kaki et al,A Smart Energy Meter using IoT for Monitoring and Control Energy via Web Application. IEEE Renewable Energy and Sustainable E-Mobility Conference (RESEM). 2023, 1–5 (2023). https://doi.org/10.1109/resem57584.2023.1023630 0 [Google Scholar]
- A. Janarthanan and V. Vidhusha, Cycle‐Consistent Generative Adversarial Network and Crypto Hash Signature Token‐based Block Chain Technology for Data Aggregation with Secured Routing in Wireless Sensor Networks. International Journal of Communication Systems. 37, 4 (2023). https://doi.org/10.1002/dac.5675. [Google Scholar]
- M. Joha, M. Rahman, & M. Zubair, IoT-Based Smart Energy Monitoring, Management, and Protection System for a Smart MicroGrid. Third International Conference on Power, Control and Computing Technologies (ICPC2T). 2024, 398–403 (2024). https://doi.org/10.1109/icpc2t60072.2024.10474733. [Google Scholar]
- N. Busaeri, N. Hiron, H. Hendra, A. Sambas, A. Aziz, M. Mohamed et al,Design and Implementation of Real-Time Sensors for Three- Phase Induction Motor Performance Monitoring using Internet of Thing (IoT). Journal of Advanced Research in Applied Sciences and Engineering Technology. 49, 2, 162–175 (2024). https://doi.org/10.37934/araset.49.2.162175 [Google Scholar]
- P. Solano and R. Canales, Data Collection and Remote Control of an IoT Electronic Nose Using Web Services and the MQTT Protocol. Sensors. 25, 14 (2025). https://doi.org/10.3390/s25144356 [Google Scholar]
- J. Riley and J. Weglian, Applied Risk Management in Electric Power Plant Decision Making. Annual Reliability and Maintainability Symposium (RAMS). 1–6 (2019). https://doi.org/10.1109/rams.2019.8768918 [Google Scholar]
- D. Kim, S. Jeon, & J. Sung, Direct Illuminance- Contribution-Based Lighting Control for IoT- Based Lighting Systems in Smart Buildings. Sustainability. 16, 12, 5054 (2024). https://doi.org/10.3390/su16125054 [Google Scholar]
- M. Ibitoye, T. Jacob, T. Omokhafe, Ọ. Imoru, A. Ndakara, & Y. Muhammad, Design and Implementation of IoT-Based Generator Monitoring and Control System. IEEE 5th International Conference on Electro-Computing Technologies for Humanity (NIGERCON). 1–5 (2024). https://doi.org/10.1109/nigercon62786.2024.10927 090 [Google Scholar]
- M. Tahir, R. Enam, S. Mustafa, & N. Ismat, Galvatron: Monitoring and Controlling of Generator Systems Through Androids. Global Conference on Wireless and Optical Technologies (GCWOT). 1–5 (2022). https://doi.org/10.1109/gcwot53057.2022.9772904 [Google Scholar]
- K. Thopate, P. Musale, P. Dandavate, B. Jadhav, P. Cholke, S. Bhatlawande et al,Smart ATM Security and Alert System with Real-Time Monitoring. International Journal on Recent and Innovation Trends in Computing and Communication. 11, 7, 32–38 (2023). https://doi.org/10.17762/ijritcc.v11i7.7827 [Google Scholar]
- H. El‐Khozondar, S. Mtair, K. Qoffa, O. Qasem, A. Munyarawi, Y. Nassar et al,A Smart Energy Monitoring System using ESP32 Microcontroller. E-Prime - Advances in Electrical Engineering, Electronics and Energy. 9, 100666 (2024). https://doi.org/10.1016/j.prime.2024.100666 [Google Scholar]
- R. Rahmat, B. Nugroho, & A. Purwono, IoT Application for Monitoring and Recording Solar Power Plant Data. E3S Web of Conferences. 500, 01008 (2024). https://doi.org/10.1051/e3sconf/202450001008 [Google Scholar]
- A. Xiong, T. Wu, & J. Jia, Design of a Real-Time Monitoring System for Electroencephalogram and Electromyography Signals in Cerebral Palsy Rehabilitation via Wearable Devices. Electronics. 13, 15, 2902 (2024). https://doi.org/10.3390/electronics13152902 [Google Scholar]
- A. Kumar, R. Matam, & M. Mukherjee, Time Optimal Concurrent Data Collection Trees for IoT Applications. IEEE International Systems Conference (SysCon). 1–7 (2021). https://doi.org/10.1109/syscon48628.2021.9447119 [Google Scholar]
- W. Khalid, M. Jamil, A. Khan, & Q. Awais Open- Source Internet of Things-Based Supervisory Control and Data Acquisition System for Photovoltaic Monitoring and Control Using HTTP and TCP/IP Protocols. Energies. 17, 16, 4083 (2024). https://doi.org/10.3390/en17164083 [Google Scholar]
- Chamim, K. Purwanto, & R. Arifin, Designing an IoT-Based Device for Controlling and Monitoring Home Electric Energy Usage. International Workshop on Artificial Intelligence and Image Processing (IWAIIP). (2023). https://doi.org/10.1109/iwaiip58158.2023.1046289 0 [Google Scholar]
- W. He, M. Baig, & M. Iqbal, An Open-Source Supervisory Control and Data Acquisition Architecture for Photovoltaic System Monitoring Using ESP32, Banana Pi M4, and Node-RED. Energies. 17, 10, 2295 (2024). https://doi.org/10.3390/en17102295 [Google Scholar]
- M. Espinosa-Gavira, A. Agüera-Pérez, J. Palomares-Salas, J. Sierra-Fernández, P. Remigio‐Carmona, & J. Rosa, Characterization and Performance Evaluation of ESP32 for Real-time Synchronized Sensor Networks. Procedia Computer Science. 237, 261–268 (2024). https://doi.org/10.1016/j.procs.2024.05.104 [Google Scholar]
- N. Joshi and T. Gupta, Oorja: Real-Time Sustainable Power Monitoring System. International Conference on Electrical Electronics and Computing Technologies (ICEECT). 1–6 (2024). https://doi.org/10.1109/iceect61758.2024.1073932 9 [Google Scholar]
- M. Anusha, P. Kumar, V. Akhil, M. Gouthami, M. Chinnaaiah, & S. Shafi, Internet of Things (IoT) Based Energy Monitoring with ESP32 and Using Thingspeak. 10th International Conference on Communication and Signal Processing (ICCSP). 1383–1387 (2024). https://doi.org/10.1109/iccsp60870.2024.10543944 [Google Scholar]
- M. Khan, I. Ahmad, A. Nordin, A. Ahmed, H. Mewada, Y. Daradkeh et al,Smart Android Based Home Automation System Using Internet of Things (IoT). Sustainability. 14, 17, 10717 (2022). https://doi.org/10.3390/su141710717 [Google Scholar]
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