Current - Issue
Year 2026 · Volume 6 · Issue 5
Review Article
A Structured Review of IoT Enabled Safety Systems and Coordinated Support Services for Women
Heena Kachhela1
Soham Gaikwad2
Vaibhav Ename3
Bhuvan Bhiogade4
Tushar Baghele5
1 Professor, Department of Artificial Intelligence & Data Science (AI&DS) Priyadarshini College of Engineering, Nagpur, Maharashtra, India. 2 3 4 5 Department of Artificial Intelligence & Data Science (AI&DS) Priyadarshini College of Engineering, Nagpur, Maharashtra, India.
Published Online: September-October 2026
Pages: 249-254
Cite this article
↗ https://www.doi.org/10.59256/ijrtmr.20260605027References
1. World Health Organization, Violence Against Women Prevalence Estimates, 2023, Geneva, Switzerland: WHO, 2025.
2. M. S. Farooq, A. Masooma, U. Omer, R. Tehseen, S. A. M. Gilani, and Z. Atal, "The role of IoT in woman's safety: A systematic literature
review," IEEE Access, vol. 11, pp. 69807-69825, 2023, doi: 10.1109/ACCESS.2023.3252903.
3. N. Islam, M. R. Hossain, M. Anisuzzaman, A. J. M. Obaidullah, and S. S. Islam, "Design and implementation of women auspice system
by utilizing GPS and GSM," in Proc. IEEE ECCE, 2019, pp. 1-6, doi: 10.1109/ECACE.2019.8679202.
4. V. Hyndavi, N. S. Nikhita, and S. Rakesh, "Smart wearable device for women safety using IoT," in Proc. IEEE ICCES, 2020, pp. 459-
463, doi: 10.1109/ICCES48766.2020.9138047.
5. K. Venkatesh, S. Parthiban, P. Santhosh Kumar, and C. N. S. Vinoth Kumar, "IoT based unified approach for women safety alert using
GSM," in Proc. IEEE ICICV, 2021, pp. 388-392, doi: 10.1109/ICICV50876.2021.9388415.
6. R. Sonia, T. Rubesh Kumar, G. Naresh, S. Durga Devi, and N. Juliet, "Empowering safety: Designing of an IoT based women protective
system using artificial intelligence enabled smart sensors," in Proc. IEEE ACCAI, 2024, pp. 1-7, doi:
10.1109/ACCAI61061.2024.10601812.
7. S. Sudheer, M. Naveen, and P. Sinthuja, "An emergency alert and monitoring system using compact IoT-based real-time women and child
safety," in Proc. IEEE ICSSS, 2025, pp. 1-8, doi: 10.1109/ICSSS66939.2025.11346389.
8. N. R. Wagh et al., "Evaluation of IoT based smart safety systems for women and children using machine learning techniques," Scientific
Reports, vol. 16, Art. no. 87, 2026, doi: 10.1038/s41598-025-29146-4.
9. V. S. S. S. Bhuvaneswari and M. Thangamuthu, "Towards intelligent safety: A systematic review on assault detection and technologies,"
Sensors, vol. 25, no. 13, Art. no. 3985, 2025, doi: 10.3390/s25133985.
10. M. Fagan, K. N. Megas, K. Scarfone, and M. Smith, IoT Device Cybersecurity Capability Core Baseline, NISTIR 8259A, 2020, doi:
10.6028/NIST.IR.8259A.
11. European Telecommunications Standards Institute, Cyber Security for Consumer Internet of Things: Baseline Requirements, ETSI EN
303 645 V3.1.3, 2024.
12. Government of India, The Digital Personal Data Protection Act, 2023, Act No. 22 of 2023, Gazette of India, 2023.
13. UN Women, UNFPA, WHO, UNDP, and UNODC, Essential Services Package for Women and Girls Subject to Violence: Core Elements
and Quality Guidelines, New York, NY, USA: UN Women, 2015.
2. M. S. Farooq, A. Masooma, U. Omer, R. Tehseen, S. A. M. Gilani, and Z. Atal, "The role of IoT in woman's safety: A systematic literature
review," IEEE Access, vol. 11, pp. 69807-69825, 2023, doi: 10.1109/ACCESS.2023.3252903.
3. N. Islam, M. R. Hossain, M. Anisuzzaman, A. J. M. Obaidullah, and S. S. Islam, "Design and implementation of women auspice system
by utilizing GPS and GSM," in Proc. IEEE ECCE, 2019, pp. 1-6, doi: 10.1109/ECACE.2019.8679202.
4. V. Hyndavi, N. S. Nikhita, and S. Rakesh, "Smart wearable device for women safety using IoT," in Proc. IEEE ICCES, 2020, pp. 459-
463, doi: 10.1109/ICCES48766.2020.9138047.
5. K. Venkatesh, S. Parthiban, P. Santhosh Kumar, and C. N. S. Vinoth Kumar, "IoT based unified approach for women safety alert using
GSM," in Proc. IEEE ICICV, 2021, pp. 388-392, doi: 10.1109/ICICV50876.2021.9388415.
6. R. Sonia, T. Rubesh Kumar, G. Naresh, S. Durga Devi, and N. Juliet, "Empowering safety: Designing of an IoT based women protective
system using artificial intelligence enabled smart sensors," in Proc. IEEE ACCAI, 2024, pp. 1-7, doi:
10.1109/ACCAI61061.2024.10601812.
7. S. Sudheer, M. Naveen, and P. Sinthuja, "An emergency alert and monitoring system using compact IoT-based real-time women and child
safety," in Proc. IEEE ICSSS, 2025, pp. 1-8, doi: 10.1109/ICSSS66939.2025.11346389.
8. N. R. Wagh et al., "Evaluation of IoT based smart safety systems for women and children using machine learning techniques," Scientific
Reports, vol. 16, Art. no. 87, 2026, doi: 10.1038/s41598-025-29146-4.
9. V. S. S. S. Bhuvaneswari and M. Thangamuthu, "Towards intelligent safety: A systematic review on assault detection and technologies,"
Sensors, vol. 25, no. 13, Art. no. 3985, 2025, doi: 10.3390/s25133985.
10. M. Fagan, K. N. Megas, K. Scarfone, and M. Smith, IoT Device Cybersecurity Capability Core Baseline, NISTIR 8259A, 2020, doi:
10.6028/NIST.IR.8259A.
11. European Telecommunications Standards Institute, Cyber Security for Consumer Internet of Things: Baseline Requirements, ETSI EN
303 645 V3.1.3, 2024.
12. Government of India, The Digital Personal Data Protection Act, 2023, Act No. 22 of 2023, Gazette of India, 2023.
13. UN Women, UNFPA, WHO, UNDP, and UNODC, Essential Services Package for Women and Girls Subject to Violence: Core Elements
and Quality Guidelines, New York, NY, USA: UN Women, 2015.
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