English

Advanced Energy-Efficient System for Precision Electrodermal Activity Monitoring in Stress Detection

Systems and Control 2024-09-11 v1 Systems and Control

Abstract

This paper presents a novel Electrodermal Activity (EDA) signal acquisition system, designed to address the challenges of stress monitoring in contemporary society, where stress affects one in four individuals. Our system focuses on enhancing the accuracy and efficiency of EDA measurements, a reliable indicator of stress. Traditional EDA monitoring solutions often grapple with trade-offs between sensor placement, cost, and power consumption, leading to compromised data accuracy. Our innovative design incorporates an adaptive gain mechanism, catering to the broad dynamic range and high-resolution needs of EDA data analysis. The performance of our system was extensively tested through simulations and a custom Printed Circuit Board (PCB), achieving an error rate below 1\% and maintaining power consumption at a mere 700μ\muA under a 3.7V power supply. This research contributes significantly to the field of wearable health technology, offering a robust and efficient solution for long-term stress monitoring.

Keywords

Cite

@article{arxiv.2409.06114,
  title  = {Advanced Energy-Efficient System for Precision Electrodermal Activity Monitoring in Stress Detection},
  author = {Ruoyu Zhang and Ruijie Fang and Elahe Hosseini and Chongzhou Fang and Ning Miao and Houman Homayoun},
  journal= {arXiv preprint arXiv:2409.06114},
  year   = {2024}
}