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Modified Split Ring Resonators Sensor for Accurate Complex Permittivity Measurements of Solid Dielectrics

机译:改进的分体环谐振器传感器用于精确复杂的固体电介质介电常数测量

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摘要

In this paper, a sensor using modified Split Ring Resonators (SRRs) is designed, simulated, fabricated, and used for advanced investigation and precise measurements of the real part and imaginary part solid dielectrics’ permittivity. Adding vertical strips tightly coupled to the outer ring of the SRR leads to the appearance of two resonant frequencies at 1.24 GHz and 2.08 GHz. This modified geometry also assures an improved sensitivity. Using the full wave electromagnetic solver, both the unloaded and loaded sensors are investigated. The numerical simulations are used to develop a mathematical model based on a curve fitting tool for both resonant frequencies, allowing to obtain analytical relations for real and imaginary parts of permittivity as a function of the sample’s thickness and quality factor. The sensor is designed and fabricated on 1.6 mm thick FR-4 substrate. The measurements of different samples, such as transparent glass, acrylic glass, plexiglass, and Teflon, confirm that the modified SRR sensor is easy to implement and gives accurate results for all cases, with measurement errors smaller than 4.5%. In addition, the measurements highlight the importance of the second resonant frequency in the cases in which numerical limitations do not allow the usage of the first resonant frequency (1 mm thick sample).
机译:本文设计了一种使用改进的分体环谐振器(SRRS)的传感器设计,模拟,制造,​​用于高级调查和精确测量实体部分和虚部实体固体电介质的介电常数。添加垂直条带紧密耦合到SRR的外圈,导致在1.24GHz和2.08 GHz的两个谐振频率的外观。这种改进的几何体也可以确保改善的灵敏度。使用全波电磁求解器,研究了卸载和装载的传感器。数值模拟用于基于谐振频率的曲线拟合工具开发数学模型,允许获得作为样品厚度和质量因数的函数的实际和虚部的介电积分的分析关系。传感器在1.6mm厚的FR-4基板上设计和制造。不同样品的测量,如透明玻璃,丙烯酸玻璃,有机玻璃和TEFLON,证实改进的SRR传感器易于实现并为所有情况提供准确的结果,测量误差小于4.5%。另外,测量结果突出了在数值限制不允许使用第一谐振频率(1mm厚的样品)的情况下的情况下的第二谐振频率的重要性。

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