Design of Wearable Device as a Fatigue Detector in Sports Activities Based on the Internet of Things

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Mohammad Fariza Iqbal Prastyo, Ilham A.E. Zaeni, Putra Wisnu Agung Sucipto, Aryansyah Pratama

2024 Proceedings - 2024 FORTEI-International Conference on Electrical Engineering: Empowering Innovations : Navigating The Future Of Semiconductor Industry, FORTEI-ICEE 2024 Conference paper Cited by 0 Quartile

Abstract

Exercise is crucial for a healthy lifestyle, but excessive fatigue can negatively impact health and performance. Detecting fatigue signals can protect against injury and improve exercise intensity. A wearable device using the MAX30102 sensor provides real-time heart rate monitoring through a smartphone application. It alerts users when fatigue is detected, calculates THRMax using the Karvonen Method, and warns if BPM readings exceed a set threshold. The MAX30102 is reliable in detecting fatigue wearables, with a small margin of error of 1.06%-6.81% compared to a conventional pulse oximeter. Data sent to Google Sheets was successfully transmitted at 100%, with slight delays in the sending interval. The device maintains low error margins, accurately detecting THRMax and fatigue alerts, and can achieve a good success rate during running. This study confirms the practical applicability of IoT-based wearable technology in real-life exercise monitoring, correct fatigue detection, and timely feedback for optimizing and ensuring athletic performance safety. © 2024 IEEE.

Affiliations

Dept. of Electrical Engineering, Universitas Negeri Malang, Malang, Indonesia