ARTICLE
12 February 2026
Intelligent Inspection and Closed-loop Management Innovation of Campus Fire Safety
Lantao Li
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1 Security Department, North China Electric Power University, Baoding 071003, China,
JERA 2026 , 10(1), 72–76; https://doi.org/10.26689/jera.v10i1.13891
© 2026 by the Authors. Licensee Whioce Publishing, Singapore. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution 4.0 International License ( https://creativecommons.org/licenses/by/4.0/ )
Abstract

As universities expand in scale and diversify in functions, traditional fire safety management faces challenges such as inefficient inspections and difficulty in tracing hazards. Technological innovation is key to enhancing efficiency, focusing on the core needs of campus fire safety. Intelligent inspection technology is applied to facility monitoring, hazard identification, and risk alerts, establishing a closed-loop system of monitoring, identification, disposal, and feedback. By leveraging the characteristics of IoT, AI, and big data technologies, the innovative solutions encompass technological integration, process optimization, and responsibility enhancement. This research aims to help universities overcome traditional bottlenecks, strengthen fire safety safeguards, and drive management transformation toward precision, intelligence, and efficiency.

References
Feng Q, 2025, Research on Improving the Efficiency of University Campus Facilities Resource Allocation Based on Data-Driven. Education Reform and Development, 7(10): 270–277.
Zou B, Wang J, Li X, et al., 2026, Interface In-Situ Generated Two-Component Phosphates Derived from Black Phosphorus Nanohybrid Endow Outstanding Thermal Stability and Fire Safety to Polycarbonate Composites. Polymer Degradation and Stability, 2026(245): 111884.
Zhang Y, Huang X, Usmani A, 2026, The Challenge of Optimizing Building Renovations for Urban Sustainability and Fire Safety. Nature Cities, 2026(prepublish): 1–2.
Xiao Y, Chen D, Huang H, et al., 2025, Micro-Rebar Architecture Enable Fire-Safety and Tough PVA/AG Aerogels. ACS Appl Mater Interfaces, 18(1): 2748–2763.
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