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Realization of a Low-Cost Displacement Sensor on PCB With Two-Metal-Layer Coplanar Waveguide Loaded by an EBG Structure

机译:带有EBG结构的两层共面波导的PCB上低成本位移传感器的实现

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摘要

There are some difficulties in the realization of a microwave displacement sensor with conventional CPW loaded by electromagnetic bandgap structure on RF laminates with a regular printed circuit board manufacturing process. These difficulties have made this process impossible in practice. In this paper, for the first time, this kind of sensor has been implemented using a two-metal-layer (TML) CPW as a transmission line to overcome these difficulties. The proposed sensor consists of a TML CPW line loaded by two periodic-air-hole structures at both sides of the transmission line. Sliding the periodic structure at one side of the transmission line makes a change in the maximum insertion loss at the fundamental central frequency of the bandgap proportional to the length of the displacement. Analysis, finite-element method simulation, and fabrication have been carried out, and an average sensitivity of about 9 dB/mm and a dynamic range of 3 mm have been achieved for the 21 unit cells sensor with a period of 6 mm at 14.24 GHz. Furthermore, some practical issues, such as influence of the air gap between the metal traces and the movable structured dielectric on the sensor behavior and robustness of the sensor against the temperature variations, are practically investigated.
机译:在具有常规印刷电路板制造工艺的RF层压板上,用电磁带隙结构加载具有常规CPW的微波位移传感器存在一些困难。这些困难使该过程在实践中无法实现。在本文中,这种传感器首次使用两层金属(CPL)CPW作为传输线来实现,以克服这些困难。提出的传感器由一条TML CPW线组成,该线由传输线两侧的两个周期性气孔结构加载。在传输线的一侧滑动周期性结构会使带隙的基本中心频率处的最大插入损耗发生变化,该变化与位移的长度成比例。已经进行了分析,有限元方法模拟和制造,并且在14.24 GHz下,周期为6 mm的21个单元电池传感器的平均灵敏度约为9 dB / mm,动态范围为3 mm 。此外,还实际研究了一些实际问题,例如金属走线与可移动结构化电介质之间的气隙对传感器性能的影响以及传感器对温度变化的鲁棒性。

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