2026-04-02 Latest Published
By Amjad Hussein Yousif
Saad Wasmi Osman Luhaib
Mohammed Younis Thanoun
Progress In Electromagnetics Research C, Vol. 168, 75-81, 2026
Abstract
A new compact tri-band elliptical microstrip resonator is proposed for noninvasive microwave-based glucose sensing using a thumb-contact configuration. The sensor consists of concentric elliptical copper rings with a localized outer-ring slot and capacitive feed coupling, implemented on an FR-4 substrate to enhance electric-field confinement beneath the thumb-loading region. A multilayer cylindrical thumb phantom incorporating dispersive tissue models and glucose-dependent blood permittivity is employed to emulate realistic on-body conditions. Full-wave simulations in the 2-6 GHz band demonstrate three dominant glucose-sensitive resonant modes. Over a concentration range of 0-600 mg/dL, the resonances shift monotonically from 2.054 to 2.142 GHz, 2.83 to 3.214 GHz, and 5.128 to 5.75 GHz, respectively. The corresponding frequency-deviation rates are 0.147, 0.64, and 1.037 MHz/(mg/dL), with the highest linearity reaching R2 ≈ 0.98. By distributing sensing across three coupled resonant modes, the proposed approach enables frequency-diverse feature extraction suitable for multivariate calibration, improving robustness against contact variability and modeling uncertainties compared with single-band configurations.