Result Details

Pressure and humidity detector based on textile integrated waveguide

KOKOLIA, M.; RAIDA, Z. Pressure and humidity detector based on textile integrated waveguide. Journal of Electrical Engineering-Elektrotechnicky Casopis, 2022, vol. 73, no. 1, p. 57-61. ISSN: 1339-309X.
Type
journal article
Language
English
Authors
Kokolia Martin, Ing., Ph.D.
Raida Zbyněk, prof. Dr. Ing., UREL (FEEC)
Abstract

In the paper, a pressure sensor and a humidity sensor are designed as supplementary components of a textile integrated waveguide (TIW) based on an artificial magnetic conductor (AMC) consisting of hexagonal elements. Thanks to AMC, sewing of electrically conductive side walls can be eliminated. Since operating in the stop-band of TIW, the sensors do not influence transmission parameters of TIW, and provide an additional functionality. For fabrication, a three-dimensional knitted fabric was used as a substrate and conductive surfaces were created from a self-adhesive copper foil. The sensors were simulated, manufactured and measured in the frequency range from 10 GHz to 12 GHz with a reasonable agreement. Since the designed components are sensitive on manufacturing tolerances, a higher measured insertion loss in TIW can be observed compared to simulations. Nevertheless, the insertion loss can be reduced when manufacturing accuracy is improved.

Keywords

Textile-integrated waveguide (TIW), artificial magnetic conductor (AMC), pressure sensor, humidity sensor

URL
Published
2022
Pages
57–61
Journal
Journal of Electrical Engineering-Elektrotechnicky Casopis, vol. 73, no. 1, ISSN 1339-309X
Publisher
Sciendo
DOI
UT WoS
000835117400008
EID Scopus
BibTeX
@article{BUT178116,
  author="Martin {Kokolia} and Zbyněk {Raida}",
  title="Pressure and humidity detector based on textile integrated waveguide",
  journal="Journal of Electrical Engineering-Elektrotechnicky Casopis",
  year="2022",
  volume="73",
  number="1",
  pages="57--61",
  doi="10.2478/jee-2022-0008",
  issn="1335-3632",
  url="https://www.sciendo.com/article/10.2478/jee-2022-0008"
}
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