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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Novel Cesaro Fractal EBG-Based Sensing Platform for Dielectric Characterization of Liquids
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A Novel Cesaro Fractal EBG-Based Sensing Platform for Dielectric Characterization of Liquids

机译:基于CESARO分形EBG的基于液晶表征的基于CESARO分形EBG的传感平台

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摘要

This article presents a compact, cost-effective, and contactless fractal modified electromagnetic bandgap structure (EBG)-based microwave sensing platform for dielectric characterization of liquids by analyzing the variation in the reflection coefficient of an antenna. The reported design is composed of a triangular-shaped antenna (0.323 lambda(o) x 0.323 lambda(o)) placed over a 3 x 3 array of Cesaro fractal-based EBG plane (0.67 lambda(o) x 0.67 lambda(o)) operating at 2.45 GHz. A significant enhancement of the E-field in the sensing region has been achieved with the incorporation of Cesaro fractals in the EBG plane which results in increased sensitivity and compactness. To validate its performance, absolute solutions of butan-1-ol, methanol, and water are loaded, and a maximum measured sensitivity of 0.875% and a maximum quality factor of 90.05 are achieved. Moreover, a maximum rms error in retrieved values of dielectric constant and loss tangent of liquid under test is found to be 1.092% and 0.813%, respectively. Our demonstrated EBG-based sensor has a compact footprint with good precision, affordability, and ease of operation in detecting liquids for microwave sensing applications.
机译:本文通过分析天线的反射系数的变化,提出了一种紧凑,经济效益和非接触的分形改性电磁带隙结构(基于液体的微波传感平台,用于液体表征液体。报告的设计由三角形天线(0.323λ(o)×0.323λ(O))组成,置于3×3阵列的基于Cesaro分形的EBG平面(0.67λ(O)×0.67λ(O) )在2.45 GHz工作。通过在EBG平面中掺入CESARO分形,已经实现了感测区域中的E场的显着增强,这导致敏感性增加和紧凑性。为了验证其性能,加载Butan-1-Ol,甲醇和水的绝对溶液,实现了0.875%的最大测量灵敏度和90.05的最大质量因子。此外,发现检测介电常数和液体损耗正切值中的最大RMS误差分别为1.092%和0.813%。我们证明的基于EBG的传感器具有紧凑的占地面积,具有良好的精度,可负担性和易于检测微波传感应用的液体的操作。

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