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Integration of Industry 4.0 Technologies in Fire and Safety Management

Authors :
Prafful Negi
Ashish Pathani
Bhuvan Chandra Bhatt
Siddharth Swami
Rajesh Singh
Anita Gehlot
Amit Kumar Thakur
Lovi Raj Gupta
Neeraj Priyadarshi
Bhekisipho Twala
Vineet Singh Sikarwar
Source :
Fire, Vol 7, Iss 10, p 335 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

The incorporation of Industry 4.0 has integrated various innovations into fire safety management, thus changing the mode of identifying, assessing, and controlling fire risks. This review aims at how emerging technologies like IoT, AI, cloud technology, and BIM are making changes to fire safety in structural structures. With IoT-enabled sensors, data, and analytics coupled with predictive algorithms for real-time scenarios, fire safety systems have become dynamic systems where early detection, quick response, and risk management can be achieved. In addition, cloud web-based solutions improve the storage of information while providing the predictive aspect for certainty of safety measures. This paper also largely focuses on such activities through the likes of ISO/IEC 30141 and IEEE 802.15.4, thus making a critical role in maintaining effective connectivity between IoT devices, which is necessary for the effective performance of fire safety systems. Furthermore, the implementation issues, including the high costs, the difficulty in scaling up the projects, and the cybersecurity concerns, are considered and compared to the possible solutions, which include upgrading in stages and the possibility of subsidies from the government. The review also points out areas for further study, such as the creation of small cell networks with lower latency, the use of AI to carry out the maintenance of IoTs, and the enhancement of protection mechanisms of systems that are based on the IoTs. In general, this paper highlights the vast possibilities offered by Industry 4.0 technologies to support organizational fire safety management or decrease fire fatalities and improve built environment fire safety.

Details

Language :
English
ISSN :
25716255
Volume :
7
Issue :
10
Database :
Directory of Open Access Journals
Journal :
Fire
Publication Type :
Academic Journal
Accession number :
edsdoj.2b091b48503d42fb963761b93b079b8d
Document Type :
article
Full Text :
https://doi.org/10.3390/fire7100335