Comparative analysis of split ring resonators (SRR), electric-LC (ELC) resonators, and S-shaped split ring resonators (S-SRR): Potential application to rotation sensors

J. Naqui, J. Coromina, F. Martín, A. K. Horestani, C. Fumeaux
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引用次数: 12

Abstract

This paper compares three different resonant particles which are useful for the implementation of metamaterials, planar microwave circuits and microwave sensors, namely, split ring resonators (SRRs), electric-LC (ELC) resonators, and S-shaped split ring resonators (S-SRRs). The three particles can be excited magnetically and/or electrically, under appropriate field polarization conditions. A transmission line, such as a coplanar waveguide (CPW), loaded with these resonant elements can be used as a rotation sensor, where the sensing principle is based on the variation of the notch magnitude with the orientation of the resonant particle. As compared to SRR-based rotation sensors, ELC-based sensors provide better linearity, sensitivity and dynamic range, although the electrical size of the ELC is larger. It is shown that the S-SRR combines the advantages of the ELC in terms of linearity, sensitivity and dynamic range, with an even smaller electrical size than the SRR. Preliminary results to demonstrate the potential of S-SRR-loaded CPWs as rotation sensors are provided.
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劈裂环谐振器(SRR)、电lc (ELC)谐振器和s形劈裂环谐振器(S-SRR)的比较分析:在旋转传感器中的潜在应用
本文比较了用于实现超材料、平面微波电路和微波传感器的三种不同的谐振粒子,即劈裂环谐振器(SRRs)、电- lc (ELC)谐振器和s形劈裂环谐振器(S-SRRs)。在适当的场极化条件下,这三个粒子可以被磁和/或电激发。传输线,如共面波导(CPW),装载这些谐振元件可以用作旋转传感器,其传感原理是基于陷波大小随谐振粒子方向的变化。与基于srr的旋转传感器相比,基于ELC的传感器提供更好的线性度、灵敏度和动态范围,尽管ELC的电气尺寸更大。结果表明,S-SRR结合了ELC在线性度、灵敏度和动态范围方面的优点,并且电气尺寸比SRR更小。初步结果证明了s - srr负载cpw作为旋转传感器的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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