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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Transmission Lines Loaded With Bisymmetric Resonators and Their Application to Angular Displacement and Velocity Sensors
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Transmission Lines Loaded With Bisymmetric Resonators and Their Application to Angular Displacement and Velocity Sensors

机译:带有双对称谐振器的传输线及其在角位移和速度传感器中的应用

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摘要

This paper is focused on the analysis of coplanar waveguides (CPWs) loaded with circularly shaped electric-LC (ELC) resonators, the latter consisting of two coplanar loops connected in parallel through a common gap. Specifically, the resonator axis is aligned with the CPW axis, and a dynamic loading with ELC rotation is considered. Since the ELC resonator is bisymmetric, i.e., it exhibits two orthogonal symmetry planes, the angular orientation range is limited to 90$^{circ}$ . It is shown that the transmission and reflection coefficients of the structure depend on the angular orientation of the ELC. In particular, the loaded CPW behaves as a transmission line-type (i.e., all-pass) structure for a certain ELC orientation (0$^{circ}$ ) since the resonator is not excited. However, by rotating the ELC, magnetic coupling to the line arises, and a notch in the transmission coefficient (with orientation dependent depth and bandwidth) appears. This feature is exploited to implement angular displacement sensors by measuring the notch depth in the transmission coefficient. To gain more insight on sensor design, the lumped element equivalent-circuit model for ELC-loaded CPWs with arbitrary ELC orientation is proposed and validated. Based on this approach, a prototype displacement sensor is designed and characterized. It is shown that by introducing additional elements (a circulator and an envelope detector), novel and high precision angular velocity sensors can also be implemented. An angular velocity sensor is thus proposed, characterized, and satisfactorily validated. The proposed solution for angular sensing is robust against environmental variations since it is based on the geometrical alignment/misalignment between the symmetry planes of the coupled elements.
机译:本文的重点是分析装有圆形电LC(ELC)谐振器的共面波导(CPW),后者由两个共面的环路通过一个公共间隙并联连接。具体而言,将谐振器轴与CPW轴对齐,并考虑ELC旋转引起的动态负载。由于ELC谐振器是双对称的,即它表现出两个正交的对称平面,所以角取向范围被限制为90°。结果表明,该结构的透射系数和反射系数取决于ELC的角度方向。特别地,由于谐振器没有被激励,所以对于特定的ELC取向(0 $ ^ {circ} $),加载的CPW表现为传输线型(即,全通)结构。但是,通过旋转ELC,会发生与线路的磁耦合,并且会出现传输系数(取决于方向的深度和带宽)的缺口。利用此功能可通过测量传输系数中的切口深度来实现角位移传感器。为了获得对传感器设计的更多了解,提出并验证了具有任意ELC方向的ELC加载CPW的集总元件等效电路模型。基于这种方法,设计并表征了原型位移传感器。结果表明,通过引入其他元件(循环器和包络检波器),还可以实现新颖且高精度的角速度传感器。因此提出,表征并令人满意地验证了角速度传感器。所提出的用于角度感测的解决方案针对环境变化是鲁棒的,因为它基于耦合元件的对称平面之间的几何对准/未对准。

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