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An Innovative Wearable Sensing System Based on Flexible Piezoresistive Sensors to Estimate Upper Body Joint Angle Using a Nonlinear AutoRegressive eXogenous Neural Model

  • Abdo Rahmane Anas Laaraibi
  • , Corentin Depontailler
  • , Gurvan Jodin
  • , Damien Hoareau
  • , Nicolas Bideau
  • , Florence Razan

Research output: Contribution to journalArticlepeer-review

Abstract

The widespread adoption of instrumented textiles has made a significant impact on various domains, encompassing health monitoring, rehabilitation, biomechanics, and sports. This study specifically focuses on the development and evaluation of a smart garment that employs low-energy flexible sensors embedded within the fabric to effectively monitor upper body movements. These sensors utilize a piezoresistive polymer integrated into the garment and establish a connection with an electronic board for data acquisition. Wireless data transmission is achieved through the utilization of Bluetooth low energy (BLE) technology, with the garment showcasing an impressive average power consumption of approximately 10 μW. To ensure the sensor's performance and reliability, a comprehensive characterization process is meticulously conducted utilizing a dedicated test bench. Furthermore, this study conducts a comparative analysis between two distinct estimators utilized for determining the flexion/extension angles of the upper body joint. The first estimator leverages a nonlinear AutoRegressive eXogenous (NARX) neural network model, while the second estimator employs a viscoelastic model. Through extensive evaluation, it becomes evident that the NARX neural network model outperforms the viscoelastic model, showcasing superior accuracy with a root-mean-square error of 4.85°. Consequently, the NARX neural network model emerges as the preferred option for accurately estimating the flexion/extension angles of the upper body joint.

Original languageEnglish
Pages (from-to)26539-26550
Number of pages12
JournalIEEE Sensors Journal
Volume23
Issue number21
DOIs
Publication statusPublished - 1 Nov 2023
Externally publishedYes

Keywords

  • Bluetooth low energy (BLE)
  • Internet of Things (IoT)
  • body joint angle
  • low-energy flexible sensors
  • mechanical bending
  • nonlinear AutoRegressive eXogenous (NARX)
  • piezoresistive polymer
  • smart garment
  • upper body movements
  • wearable sensors

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