Portable IoT Body Temperature Screening System to Combat the Adverse Effects of COVID-19
Abstract
:1. Introduction
- Robustness: These devices are bulky and fragile due to the lack of an enclosure to safeguard their internal components [13].
- Costs and maintenance: As these systems are integrated into existing infrastructure, such as smart doors for monitoring body temperature and facemask detection, they can be expensive to deploy and maintain [14].
- Designed for personal use: Based on Figure 1, most IoT-enabled body temperature assessment devices, such as Tempdrop, iFever, and iSense, are designed for personal use and are typically worn on the wrist. Thus, they cannot be used for real-time body temperature screening of a large number of people [15].
2. Materials and Methods
2.1. Description and Components of the System
2.2. Assembly of the System
3. Results and Discussion
3.1. Sensor Performance Assessment
3.2. IoT Client Reliability Assessment
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Subject | Temperature (°C) | |||||||||
---|---|---|---|---|---|---|---|---|---|---|
Day 1 | Day 2 | Day 3 | Day 4 | Day 5 | ||||||
Test | Base | Test | Base | Test | Base | Test | Base | Test | Base | |
1 | 35.9 | 35.7 | 36.1 | 35.8 | 35.8 | 35.7 | 36.4 | 36.1 | 36.6 | 36.4 |
2 | 36.2 | 35.9 | 35.8 | 35.6 | 36.3 | 36.1 | 35.9 | 35.8 | 35.8 | 35.6 |
3 | 35.8 | 35.5 | 36.3 | 36.0 | 36.7 | 36.3 | 36.6 | 36.3 | 36.2 | 35.9 |
4 | 35.6 | 35.3 | 35.4 | 35.2 | 36.5 | 36.2 | 36.0 | 35.8 | 36.3 | 36.1 |
5 | 36.9 | 36.7 | 36.5 | 36.2 | 36.6 | 36.3 | 36.1 | 35.8 | 35.7 | 35.4 |
6 | 36.8 | 36.5 | 36.7 | 36.6 | 36.7 | 36.6 | 36.5 | 36.4 | 35.9 | 35.7 |
7 | 35.7 | 35.4 | 35.5 | 35.3 | 35.3 | 35.0 | 37.0 | 36.7 | 36.8 | 36.6 |
8 | 36.0 | 35.8 | 35.9 | 35.6 | 35.9 | 35.6 | 36.3 | 36.0 | 36.1 | 35.9 |
9 | 35.4 | 35.1 | 36.1 | 35.8 | 35.8 | 35.4 | 36.6 | 36.4 | 36.0 | 35.7 |
10 | 36.3 | 36.0 | 36.5 | 36.1 | 36.1 | 35.8 | 35.9 | 35.7 | 36.6 | 36.3 |
Temperature (°C) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|
Day 1 | Day 2 | Day 3 | Day 4 | Day 5 | ||||||
Test | Base | Test | Base | Test | Base | Test | Base | Test | Base | |
Average | 36.06 | 35.79 | 36.08 | 35.82 | 36.17 | 35.90 | 36.33 | 36.10 | 36.20 | 35.96 |
Variance | 0.75% | 0.73% | 0.75% | 0.64% | 0.68% |
Day | Visitor Count | Total No. of IoT Client Readings | Data Broadcast Failures Detected | Data Broadcast Success Rate |
---|---|---|---|---|
1 | 37 | 37 | 0 | 100% |
2 | 35 | 35 | 0 | 100% |
3 | 29 | 29 | 0 | 100% |
4 | 32 | 32 | 0 | 100% |
5 | 39 | 39 | 0 | 100% |
6 | 36 | 36 | 0 | 100% |
7 | 33 | 33 | 0 | 100% |
8 | 30 | 30 | 0 | 100% |
9 | 33 | 33 | 0 | 100% |
10 | 38 | 38 | 0 | 100% |
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Gsangaya, K.R.; Hajjaj, S.S.H.; Sultan, M.T.H.; Shahar, F.S.; Shah, A.U.M. Portable IoT Body Temperature Screening System to Combat the Adverse Effects of COVID-19. J. Sens. Actuator Netw. 2022, 11, 22. https://doi.org/10.3390/jsan11020022
Gsangaya KR, Hajjaj SSH, Sultan MTH, Shahar FS, Shah AUM. Portable IoT Body Temperature Screening System to Combat the Adverse Effects of COVID-19. Journal of Sensor and Actuator Networks. 2022; 11(2):22. https://doi.org/10.3390/jsan11020022
Chicago/Turabian StyleGsangaya, Kisheen Rao, Sami Salama Hussen Hajjaj, Mohamed Thariq Hameed Sultan, Farah Syazwani Shahar, and Ain Umaira Md Shah. 2022. "Portable IoT Body Temperature Screening System to Combat the Adverse Effects of COVID-19" Journal of Sensor and Actuator Networks 11, no. 2: 22. https://doi.org/10.3390/jsan11020022
APA StyleGsangaya, K. R., Hajjaj, S. S. H., Sultan, M. T. H., Shahar, F. S., & Shah, A. U. M. (2022). Portable IoT Body Temperature Screening System to Combat the Adverse Effects of COVID-19. Journal of Sensor and Actuator Networks, 11(2), 22. https://doi.org/10.3390/jsan11020022