COMPUTER MODELING OF MICROWAVE STRIPLINE RESONATORS FOR NON-INVASIVE SENSING

B. Minasyan, L. Odabashyan, Z. Baghdasaryan, A. Babajanyan, Kiejin Lee
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Abstract

Microwave stripline resonators of rectangular and double rectangular shapes for non-invasive sensing have been designed and investigated experimentally and numerically. The resonator of single rectangular shape has had a resonance at about 4.32 GHz for $ S_{21} $ and the resonator of double rectangular shape has had resonances at about 3.5 GHz for $ S_{21} $ and 5.85 GHz for $ S_{11} $. The simulation results for the sensitivity of the single rectangular and double rectangular resonators were -0.023 dB/(mg/dL) (glucose concentration) and 0.0143 dB/(mg/dL) (NaCl concentration), respectively. The electromagnetic field distribution of the resonators was visualized and compared using computer simulation software HFSS. The obtained data have shown the accuracy of resonators as a non-invasive sensor for biophysical applications.
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微波带状线谐振器非侵入式传感的计算机建模
设计了用于无创传感的矩形和双矩形微波带状线谐振器,并对其进行了实验和数值研究。单矩形谐振器在$ S_{21} $处的谐振频率约为4.32 GHz,双矩形谐振器在$ S_{21} $处的谐振频率约为3.5 GHz,在$ S_{11} $处的谐振频率约为5.85 GHz。模拟结果表明,单矩形谐振腔和双矩形谐振腔的灵敏度分别为-0.023 dB/(mg/dL)(葡萄糖浓度)和0.0143 dB/(mg/dL) (NaCl浓度)。利用计算机仿真软件HFSS对谐振腔的电磁场分布进行了可视化和比较。所获得的数据表明,谐振器作为一种非侵入式传感器在生物物理应用中的准确性。
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