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A paper-based self-inductive folding displacement sensor for human respiration and motion signals measurement

Engineering and Technology

A paper-based self-inductive folding displacement sensor for human respiration and motion signals measurement

J. Zhu, Y. Jia, et al.

Discover an innovative paper-based self-inductive folding displacement sensor designed by Junwen Zhu, Yanshen Jia, Mengmeng Li, Zhanxuan Zhou, Yinghao Chen, Qiang Liu, and Xing Yang! This eco-friendly sensor offers remarkable precision with a remarkable displacement resolution of 20 µm, capable of detecting human respiration and motion states with exceptional sensitivity.

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~3 min • Beginner • English
Abstract
Flexible sensors have recently attracted much attention for potential applications in motion measurement and wearable health monitoring. In this paper, an environment-friendly, economic, and high-performance paper-based self-inductive folding displacement sensor (PSIFS) was proposed, with displacement resolution of 20 µm and wide measurement range of 43.2 mm. The sensor sensitivity could reach 4.44% mm⁻¹ with the maximum deviation of 0.00904 in experiments. The sensing mechanism based on inductance variation due to three-dimensional deformation of planar inductor coil and structural design principle under two dimensions of sensitivity and size were proposed and studied. The folding method to enhance sensitivity was proposed and 3 times sensitivity enhancement could be achieved by once folding. Multiple breathing states and motion states of the human joints could be recognized. The proposed simple paper-based sensor, folding method to increase sensitivity, and structural design model may provide a way for the research of flexible sensors.
Publisher
npj Flexible Electronics
Published On
Aug 02, 2022
Authors
Junwen Zhu, Yanshen Jia, Mengmeng Li, Zhanxuan Zhou, Yinghao Chen, Qiang Liu, Xing Yang
Tags
self-inductive sensor
displacement measurement
human respiration
motion detection
eco-friendly technology
inductance variation
sensitivity
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