School of Intelligent Manufacturing, Jiangsu Vocational College of Electronics and Information, Huaian, Jiangsu,223003, China
Received: April 6, 2026
Accepted: May 18, 2026
Publication Date: July 3, 2026
Components of IoT in Smart Manufacturing.
Copyright The Author(s). This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are cited.
Download Citation: BibTeX | http://dx.doi.org/10.6180/jase.202610_33.027
The proposed Hybrid IoT framework combines edge and cloud intelligence to enable predictive maintenance and optimization in smart manufacturing systems. Edge computing supports real-time processing for fast anomaly detection, while cloud computing provides high computational power for deep analysis, model training, and long-term decision-making. The framework is adaptable to diverse industrial environments with varying hardware and communication technologies, ensuring scalability and flexibility. It integrates advanced AI methods to enhance interpretability and ensure transparent, reliable system decisions. Privacy-preserving techniques protect sensitive industrial data during transmission and processing. Overall, this hybrid approach offers a secure, efficient, scalable, and robust solution that improves performance, reliability, and sustainability in modern smart manufacturing applications.
Keywords: Hybrid IoT Framework, Predictive Maintenance, Edge Computing, Cloud Computing, Real-Time Fault Detection
- [1] C. Schittich, G. Staib, D. Balkow, M. Schuler, and W. Sobek. Glass Construction Manual. München: Birkhäuser, 2007. DOI: 10 . 11129 / detail . 9783034615549.
- [2] C. W. Sinton. “Glass and Energy”. In: Encyclopedia of Energy. Ed. by C. J. Cleveland. New York: Elsevier, 2004, 1–10. DOI: 10.1016/B0-12-176480-X/00374-0.
- [3] J. Belis, C. Louter, J. H. Nielsen, and J. Schneider. “Architectural Glass”. In: Springer Handbook of Glass. Springer International Publishing, 2019, 1781–1819. DOI: 10.1007/978-3-319-93728-1_52.
- [4] S. R. Ledbetter, A. R. Walker, and A. P. Keiller, (2006) “Structural Use of Glass” Journal of Architectural Engineering 12(3): 137–149. DOI: 10.1061/(ASCE)1076-0431(2006)12:3(137).
- [5] N. Ghabra, L. Rodrigues, and P. Oldfield, (2017) “The impact of the building envelope on the energy efficiency of residential tall buildings in Saudi Arabia” International Journal of Low-Carbon Technologies 12(4): 411–419. DOI: 10.1093/ijlct/ctx005.
- [6] E. Gavanski and G. A. Kopp, (2011) “Glass Breakage Tests under Fluctuating Wind Loads” Journal of Architectural Engineering 17(1): 34–41. DOI: 10.1061/(ASCE)AE.1943-5568.0000028.
- [7] M. T. Naqash, A. Formisano, and E. Noroozinejad Farsangi, (2022) “Using a Full-Scale Mock-Up of Skylight to Evaluate Its Performance Following Standards Criteria” Arabian Journal for Science and Engineering 47(10): 13407–13420. DOI: 10.1007/s13369-022-06817-2.
- [8] M. T. Naqash and A. Formisano, (2025) “Glass panels supported by spider fittings: advantages, challenges, and applications in modern masonry façades” International Journal of Masonry Research and Innovation 10(6): 584–601. DOI: 10.1504/IJMRI.2025.149796.
- [9] M. T. Naqash and E. Noroozinejad Farsangi, (2025) “Performance-driven choice of steel vs aluminum curtain walls: a scenario-based comparison” Building Materials and Structures 68: 2500006T. DOI: 10.5937/GRMK2500006T.
- [10] H. A. Elgohary, (2023) “Supplementary Span-to-Depth Ratio Expressions for One-Way Slab Complying with ACI-318 and SBC-304 Deflection Limits” Journal of Umm Al-Qura University for Engineering and Architecture 14: DOI: 10.1007/s43995-023-00015-3.
- [11] G. Mamaeva and H. Elgohary, (2020) “Experimental Estimation of Period of Vibration for Multistory RC Frame Buildings” Mansoura Engineering Journal 32: DOI: 10.21608/bfemu.2020.128774.
- [12] British Standards Institution. BS 6180:2011 Barriers in and About Buildings – Code of Practice. Confirmed June 2016. 2011. URL: https://www.thenbs.com/PublicationIndex/documents/details?Pub=BSI&DocID=29687.
- [13] M. Hammad et al., (2023) “Security Framework for Network-Based Manufacturing Systems with Personalized Customization: An Industry 4.0 Approach” Sensors 23(17): 7555. DOI: 10.3390/s23177555.
- [14] K. Li, Y. Zhang, Y. Huang, Z. Tian, and Z. Sang, (2023) “Framework and Capability of Industrial IoT Infrastructure for Smart Manufacturing” Standards 3(1): 1–18. DOI: 10.3390/standards3010001.
- [15] Ziya07. Intelligent Manufacturing Dataset. 2025. URL: https://www.kaggle.com/datasets.
