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Two-dimensional alignment and displacement sensor based on movable broadside-coupled split ring resonators

机译:基于可动宽边耦合开环谐振器的二维对准位移传感器

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摘要

This paper proposes a two-dimensional alignment and displacement sensor based on movable broadside-coupled split ring resonators (BC-SRRs). As a basis for this sensor, a one-dimensional displacement sensor based on a microstrip line loaded with BC-SRRs is presented firstly. It is shown that compared to previously published displacement sensors, based on SRR-loaded coplanar waveguides, the proposed one-dimensional sensor benefits from a much wider dynamic range. Secondly, it is shown that with modifications in the geometry of the BC-SRRs, the proposed one-dimensional sensor can be modified and extended by adding a second element to create a high-dynamic range two-dimensional displacement sensor. Since the proposed sensors operate based on a split in the resonance frequency, rather than the resonance depth, they benefit from a high immunity to environmental noise. Furthermore, since the sensors’ principle of operation is based on the deviation from symmetry, they are more robust to ambient conditions such as changes in the temperature, and thus they can be used as alignment sensors as well. A prototype of the proposed two-dimensional sensor is fabricated and the concept and simulation results are validated through experiment.
机译:本文提出了一种基于可移动宽边耦合裂环谐振器(BC-SRRs)的二维对准和位移传感器。作为该传感器的基础,首先提出了一种基于微带线的一维位移传感器,该微带线装有BC-SRR。结果表明,与以前发布的基于SRR加载的共面波导的位移传感器相比,提出的一维传感器受益于更宽的动态范围。其次,显示出通过对BC-SRR的几何形状进行修改,可以通过添加第二个元素以创建高动态范围二维位移传感器来对所提出的一维传感器进行修改和扩展。由于建议的传感器基于共振频率的划分而不是共振深度进行操作,因此它们受益于对环境噪声的高度抵抗力。此外,由于传感器的工作原理是基于与对称性的偏差,因此它们对环境条件(例如温度变化)更加稳定,因此它们也可用作对准传感器。制造了所提出的二维传感器的原型,并通过实验验证了概念和仿真结果。

著录项

  • 作者

    Karami-Horestani Ali;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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