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April 8, 2026Journal of the Korean Society for Precision Engineering0 citationsOpen Access

Signal Restoration and Self-assessment of Performance Degradation in Wearable Sensors

JJJuhyeong JeonGYGaeun YunPLPhuong Thao Le

Key Points

  • This study aims to quantify and characterize the degradation of wearable sensors while restoring EMG signals.
  • Conducted in a controlled single-participant setting
  • Used four types of sensors: polyethylene terephthalate film, parylene film, 3M bioelectrode pads, and microneedle patches
  • Monitored impedance at 100 Hz to assess sensor aging
  • Employed a one-dimensional convolutional autoencoder for EMG signal reconstruction
  • Reconstruction loss correlated with impedance changes, providing a metric for sensor health
  • Showed feasibility of real-time signal recovery
  • Indicated potential for extending the lifespan of wearable sensors

Abstract

Wearable sensors are susceptible to degradation from physical wear, moisture, and desiccation, which can result in signal attenuation and unreliable data. This pilot study, conducted in a controlled single-participant setting, introduces a framework to quantify and characterize sensor degradation while restoring corrupted electromyography (EMG) signals. Four types of sensors—polyethylene terephthalate film, parylene film, 3M bioelectrode pads, and microneedle patches—were affixed to the left forearm in a three-electrode EMG configuration. Impedance at 100 Hz was monitored as an indicator of sensor aging, while a one-dimensional convolutional autoencoder was employed to reconstruct degraded EMG signals using a loss function that incorporated both time-domain and frequency-domain error terms. The reconstruction loss showed a correlation with impedance changes, providing a practical metric for assessing sensor health. These findings highlight the feasibility of real-time signal recovery and its potential to extend the lifespan of sensors.

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Cite This Study

Jeon et al. (2026) studied this question.

synapsesocial.com/papers/69d5f0d774eaea4b11a7a377https://doi.org/10.7736/jkspe.025.123
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