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Angular Displacement and Velocity Sensors Based on Coplanar Waveguides (CPWs) Loaded with S-Shaped Split Ring Resonators (S-SRR)

机译:基于共面波导(CPW)的S型开口环形谐振器(S-SRR)加载的角位移和速度传感器

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摘要

In this paper, angular displacement and angular velocity sensors based on coplanar waveguide (CPW) transmission lines and S-shaped split ring resonators (S-SRRs) are presented. The sensor consists of two parts, namely a CPW and an S-SRR, both lying on parallel planes. By this means, line-to-resonator magnetic coupling arises, the coupling level being dependent on the line-to-resonator relative angular orientation. The line-to-resonator coupling level is the key parameter responsible for modulating the amplitude of the frequency response seen between the CPW ports in the vicinity of the S-SRR fundamental resonance frequency. Specifically, an amplitude notch that can be visualized in the transmission coefficient is changed by the coupling strength, and it is characterized as the sensing variable. Thus, the relative angular orientation between the two parts is measured, when the S-SRR is attached to a rotating object. It follows that the rotation angle and speed can be inferred either by measuring the frequency response of the S-SRR-loaded line, or the response amplitude at a fixed frequency in the vicinity of resonance. It is in addition shown that the angular velocity can be accurately determined from the time-domain response of a carrier time-harmonic signal tuned at the S-SRR resonance frequency. The main advantage of the proposed device is its small size directly related to the small electrical size of the S-SRR, which allows for the design of compact angular displacement and velocity sensors at low frequencies. Despite the small size of the fabricated proof-of-concept prototype (electrically small structures do not usually reject signals efficiently), it exhibits good linearity (on a logarithmic scale), sensitivity and dynamic range.
机译:本文提出了基于共面波导(CPW)传输线和S形开口环谐振器(S-SRRs)的角位移和角速度传感器。传感器由两部分组成,即CPW和S-SRR,它们均位于平行平面上。通过这种方式,产生了线到谐振器的磁耦合,耦合水平取决于线到谐振器的相对角取向。线路到谐振器的耦合水平是关键参数,它负责调制在S-SRR基本谐振频率附近的CPW端口之间看到的频率响应的幅度。具体地,通过耦合强度来改变可以在透射系数中可视化的振幅切口,并且将其表征为感测变量。因此,当S-SRR安装在旋转物体上时,可以测量两个零件之间的相对角向。因此,可以通过测量加载S-SRR的线路的频率响应或谐振附近固定频率下的响应幅度来推断旋转角度和速度。另外示出,可以根据以S-SRR谐振频率调谐的载波时谐信号的时域响应来精确地确定角速度。所提出的装置的主要优点是其小尺寸与S-SRR的小电气尺寸直接相关,这允许设计紧凑的低频角位移和速度传感器。尽管制造的概念验证原型的尺寸很小(电小的结构通常不能有效地抑制信号),但它具有良好的线性度(对数尺度),灵敏度和动态范围。

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