Improved approach using multiple planar complementary split-ring resonators for accurate measurement of permittivity

Chia-Ming Hsu, Kuan-Zhou Chen, Chieh-Sen Lee, Chin-Lung Yang
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Abstract

This paper presents a non-destructive planar single-compound triple complementary split-ring resonator (TCSRR) to improve the measurement of the dielectric constants of a material under test (MUT). This proposed microwave sensor technology requires the multiple-square concentric ring to generate multiple non-identical frequency responses to take estimate for dielectric property measurement, and the cooperated estimate of SC-TCSRR can effectively mitigate the permittivity measurement error. The dielectric constants and thickness of a MUT are dependent on the operational resonance frequency deviation. The CSRR sensor is etched on the ground plane of a microstrip line. The SC-TCSRR sensor operating between 1.5 GHz to 4.6 GHz band is fabricated by specific ratio range and tested for verification. For calculation and analysis, the permittivity of a MUT is extracted by two resonant frequencies (fM, fH). This proposed method uses three sets (fM, fH), fL, fM) and fL, fH) and averages the measured results to improve measurement accuracy. The experiments yielded average measurement errors less than 1.60 % for the permittivity of MUT. And, the result is more accurate than dual ring CSRR's measurement error result [1] 4.63%. This effective TCSRR sensor offers low computational costs, easy fabrication and precise measurement.
利用多平面互补劈环谐振器精确测量介电常数的改进方法
为了改进被测材料介电常数的测量,提出了一种无损平面单化合物三互补劈裂环谐振器(TCSRR)。提出的微波传感器技术需要多方同心圆产生多个不相同的频率响应来估计介电常数测量,SC-TCSRR的协同估计可以有效地减轻介电常数测量误差。MUT的介电常数和厚度取决于工作谐振频率偏差。CSRR传感器蚀刻在微带线的接地面上。SC-TCSRR传感器工作在1.5 GHz ~ 4.6 GHz频段,采用特定比例范围制作,并进行了验证测试。为了进行计算和分析,采用两个谐振频率(fM, fH)提取MUT的介电常数。该方法采用三组(fM, fH)、fL, fM和fL, fH)对测量结果进行平均,提高了测量精度。实验结果表明,MUT介电常数的平均测量误差小于1.60%。该结果比双环CSRR的测量误差结果bb0 4.63%更准确。这种有效的TCSRR传感器具有低计算成本,易于制造和精确测量的优点。
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