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April 30, 2026Sensors0 citationsOpen Access

Patch-Type Microwave Resonant Sensor Based on a Complementary Split-Ring Resonator for Monitoring Glucose Concentration Under Static and Dynamic Conditions

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WWWei-Lung Wu

Key Points

  • The research aims to develop a microwave resonant sensor for glucose concentration measurement.
  • Designed a complementary split-ring resonator (CSRR)-based sensor operating at 5 GHz.
  • Tested glucose solutions in concentrations from 5% to 65%.
  • Observed frequency shifts in the resonant frequency to estimate glucose concentration.
  • Successfully estimated glucose concentrations based on resonance condition changes.
  • Identified measurement features from scattering parameters S11 and S21.

Abstract

This study designs a complementary split-ring resonator (CSRR)-based 5 GHz patch-type microwave resonant sensor for measuring the concentrations of glucose solutions under static and dynamic conditions. Circulating glucose solutions were used to simulate blood glucose, and the CSRR sensor was operated over a frequency range of 4.8–5.0 GHz. The planar microstrip configuration of the CSRR creates a highly confined electric field within the sensing area. When glucose solution covers or flows through the sensing region, the dielectric loading changes, altering the resonance condition and inducing perturbations. Identifiable measurement features can be extracted from data on the scattering parameter S11. Glucose solutions with concentrations ranging from 5% to 65% were used to examine the response of the proposed sensor. The concentrations of these solutions were estimated on the basis of resonant frequency shifts, and variation in S21 at the CSRR’s resonant frequency (or at a fixed frequency corresponding to the maximum slope) was also analyzed.

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Cite This Study

Wei-Lung Wu (2026) studied this question.

synapsesocial.com/papers/69f2a4da8c0f03fd67763e05https://doi.org/10.3390/s26092710
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