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TherMobile: Measuring Body Temperature Using a Mobile Device

Authors
Jun, SanghoonLee, KilhoLee, Jinkyu
Issue Date
Jul-2022
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Temperature measurement; Batteries; Temperature sensors; Temperature distribution; Battery charge measurement; Behavioral sciences; Heat transfer; Measuring body temperature; battery temperature sensor; smartphone; heat transfer; support vector machine
Citation
IEEE SENSORS JOURNAL, v.22, no.13, pp.13338 - 13345
Journal Title
IEEE SENSORS JOURNAL
Volume
22
Number
13
Start Page
13338
End Page
13345
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/42505
DOI
10.1109/JSEN.2022.3179726
ISSN
1530-437X
Abstract
The spread of COVID-19 issues high demand on measuring body temperature, which necessitates thermometers. To alleviate a burden to equip/carry thermometers, this paper develops a framework "Ther- Mobile" that measures body temperature using a commercial-off-the-shelf smartphone that most people carry everywhere. Considering that most (if not all) smartphones have a temperature sensor on its battery, we utilize heat transfer from a body part that makes contact with the smartphone, to the smartphone battery. To this end, we collect a time series of the smartphone battery temperature for different pairs of the initial temperature of the smartphone battery and the temperature of a body part, and then classify them. To enable the data collection and classification to infer the temperature of the body part, we address important practical issues, including how to gather data for different target temperatures of a body part (although human body temperature is not controllable), and how to minimize a burden for individual users to gather all necessary data. Our experiments demonstrate that "Ther- Mobile" achieves 90.0% accuracy of measuring body temperature with 1.0 degrees C granularity, enabling a commercial-off-the-shelf smartphone to substitute for a thermometer without any additional hardware.
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