Home / Current Issue / Paper 1715514
Smart Tourist Safety Monitoring and Incident Response System
Subject area: Science,Engineering and Technology · Area of research: Data Science
Abstract
Tourism is one of the fastest-growing industries in the world, but safety concerns remain a major challenge for travelers visiting unfamiliar locations. Tourists often face risks such as lack of emergency assistance, unsafe locations, and insufficient information about nearby facilities. This paper proposes a Smart Tourist Safety Monitoring and Incident Response System that improves tourist safety by providing real-time location tracking, danger zone alerts, and emergency response features. The system uses GPS-based location tracking to monitor tourist movement and notify users when they approach potentially dangerous areas. It also provides information about essential facilities such as restrooms, water availability, temple attire guidelines, trekking equipment, and accessibility options. An admin dashboard is designed to monitor tourist activity and respond quickly during emergencies. The proposed system is implemented using modern web technologies including TypeScript, JavaScript, Node.js, Vite, HTML, and CSS. The system aims to enhance tourist safety, provide real-time monitoring, and ensure faster emergency response during incidents.
Keywords
Tourist Safety, GPS Tracking, Emergency Alert System, Smart Tourism, Real-Time Monitoring.
References
[1] S. Nakamoto, “Bitcoin: A Peer-to-Peer Electronic Cash System,” 2008.
[2] K. Ashton, “That ‘Internet of Things’ Thing,” *RFID Journal*, vol. 22, no. 7, pp. 97–114, 2009.
[3] M. Abadi et al., “TensorFlow: A System for Large-Scale Machine Learning,” in *Proc. 12th USENIX Symp. Operating Systems Design and Implementation (OSDI)*, 2016, pp. 265– 283.
[4] A. Dorri, S. S. Kanhere, and R. Jurdak, “Blockchain in Internet of Things: Challenges and Solutions,” *IEEE Internet of Things Journal*, vol. 6, no. 2, pp. 200–213, Apr. 2019.
[5] H. Menouar, I. Güvenc, K. Akkaya, S. Uluagac, A. Kadri,
[6] J. Zhang, L. Liu, and Y. Li, “Artificial Intelligence in Smart City Applications: A Survey,” *IEEE Access*, vol. 9, pp. 15100– 15115, 2021.
[7] World Tourism Organization (UNWTO), “Tourism Safety and Security Guidelines,” Madrid, Spain, 2023.
[8] N. Kshetri, “Blockchain’s Roles in Strengthening Cybersecurity and Protecting Privacy,” *Telecommunications Policy*, vol. 41, no. 10, pp. 1027–1038, 2017.
[9] R. Want, “An Introduction to RFID Technology,” *IEEE Pervasive Computing*, vol. 5, no. 1, pp. 25–33, Jan.–Mar. 2006.
[10] L. Atzori, A. Iera, and G. Morabito, “The Internet of Things: A Survey,” *Computer Networks*, vol. 54, no. 15, pp. 2787– 2805, 2010.
[11] A. Al-Fuqaha et al., “Internet of Things: A Survey on Enabling Technologies, Protocols, and Applications,” *IEEE Communications Surveys & Tutorials*, vol. 17, no. 4, pp. 2347– 2376, 2015.
[12] T. M. Mitchell, *Machine Learning*. New York, NY, USA: McGraw-Hill, 1997.
[13] Smith, J., "Smart Tourism Technologies for Safety Monitoring," International Journal of Tourism Research, 2020.
[14] Brown, T., "Tourist Safety and Smart City Technologies," International Conference on Smart Tourism, 2022.
How to cite this paper
@article{1715514,
author = {Revathy R, Srikannigapriyadharshini R, Pricila S, Vaishnavi R, Abisha A},
title = {Smart Tourist Safety Monitoring and Incident Response System},
journal = {Iconic Research And Engineering Journals},
year = {2026},
volume = {9},
number = {9},
pages = {2935-2940},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1715514.pdf},
abstract = {Tourism is one of the fastest-growing industries in the world, but safety concerns remain a major challenge for travelers visiting unfamiliar locations. Tourists often face risks such as lack of emergency assistance, unsafe locations, and insufficient information about nearby facilities. This paper proposes a Smart Tourist Safety Monitoring and Incident Response System that improves tourist safety by providing real-time location tracking, danger zone alerts, and emergency response features. The system uses GPS-based location tracking to monitor tourist movement and notify users when they approach potentially dangerous areas. It also provides information about essential facilities such as restrooms, water availability, temple attire guidelines, trekking equipment, and accessibility options. An admin dashboard is designed to monitor tourist activity and respond quickly during emergencies. The proposed system is implemented using modern web technologies including TypeScript, JavaScript, Node.js, Vite, HTML, and CSS. The system aims to enhance tourist safety, provide real-time monitoring, and ensure faster emergency response during incidents.},
keywords = {Tourist Safety, GPS Tracking, Emergency Alert System, Smart Tourism, Real-Time Monitoring.},
month = {March},
doi = {https://doi.org/10.64388/IREV9I9-1715514}
}