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Two-Dimensional Displacement Sensor Based on CPW Line Loaded by Defected Ground Structure With Two Separated Transmission Zeroes

机译:基于CPW线的二维位移传感器,该位移由两个分开的传输零点的变形地面结构加载

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In this paper, application of a defected ground structure in realization of 1-D and 2-D microwave displacement sensors is presented. A coplanar waveguide (CPW) line with two slots along the line that generate a transmission zero (TZ) in the transmission response is printed on a fixed substrate. A metallic patch is also printed on the bottom face of a movable substrate located on the fixed substrate. By moving the upper substrate, the length of the etched slots on the fixed underneath substrate changes, and hence, the TZ shifts proportionally. The displacement can be measured based on the frequency shift of the TZ. The 2-D displacement sensor has a similar structure with two additional slots perpendicular to the CPW line on the signal trace. The parallel and perpendicular slots generate two separated TZs in two different frequency bands. The proposed 2-D displacement sensor uses the frequency range of 2.8-4.2 GHz to measure the horizontal displacement with the high sensitivity of 0.41 GHz/1 mm and the frequency range of 5.7-8.8 GHz to measure the vertical displacement with the high sensitivity of 1.2 GHz/1 mm. In comparison with the previous works, the displacement measurement in each direction is independent of the other one. Furthermore, since TZs show narrow notch-frequency bands with high and fixed rejection levels (high Q-factor resonator), independent of the measured displacement, the measurement error is minimized. Also, the dynamic range of the sensor is wide and almost has no intrinsic geometrical limitation. The 2-D sensor is fabricated and tested. The measured results show good agreement with the simulated results.
机译:本文提出了一种有缺陷的地面结构在实现一维和二维微波位移传感器中的应用。共面波导(CPW)线沿着该线具有两个槽,它们在传输响应中生成传输零(TZ),被印刷在固定的基板上。金属贴片也被印刷在位于固定基板上的可移动基板的底面上。通过移动上基板,固定在下方的基板上的蚀刻槽的长度发生变化,因此TZ成比例地移动。可以根据TZ的频移测量位移。 2-D位移传感器具有类似的结构,在信号迹线上具有两个垂直于CPW线的附加插槽。平行和垂直时隙在两个不同的频带中生成两个分离的TZ。拟议的二维位移传感器使用2.8-4.2 GHz的频率范围以0.41 GHz / 1 mm的高灵敏度来测量水平位移,并使用5.7-8.8 GHz的频率范围以高灵敏度来测量垂直位移。 1.2 GHz / 1毫米与以前的工作相比,每个方向上的位移测量都独立于另一个方向。此外,由于TZ显示的陷波频段具有高和固定的抑制电平(高Q因子谐振器),因此与测量的位移无关,因此测量误差最小。而且,传感器的动态范围很宽,几乎没有固有的几何限制。二维传感器已制造并经过测试。测量结果与模拟结果吻合良好。

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