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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A Highly Sensitive Planar Microwave Sensor for Detecting Direction and Angle of Rotation
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A Highly Sensitive Planar Microwave Sensor for Detecting Direction and Angle of Rotation

机译:用于检测方向和旋转角度的高度敏感的平面微波传感器

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摘要

This article presents a technique based on a modified complementary split-ring resonator (CSRR) to detect angular displacement and direction of rotation with high resolution and sensitivity over a wide dynamic range. The proposed microwave planar sensor takes advantage of the asymmetry of the sensor geometry and measures the angle of rotation in terms of the change in the relative phase of the reflection coefficients. The sensor consists of a movable modified CSRR (the rotor) and a microstrip line with a circular defect in the ground plane (the stator). By selecting the substrate material and the rotor thickness, the sensor can be designed to work at different operating frequencies. A theoretical model of the sensor is proposed and is followed by a detailed numerical analysis involving equivalent circuit simulations, full-wave computations, and measurement results. Using positioning error estimation and air-gap analysis, a technique based on phase-change measurements is found to be better than those based on magnitude measurements alone. The maximum sensitivity for measuring the angular rotation is found to be a 4.3 degrees change in the relative phase of the reflection coefficient per 1 degrees of rotation. The sensor has an angular measurement range from -90 degrees to +90 degrees. The sensor-a stator fabricated on a 0.5-mm-thick Rogers RT5880 substrate and three rotors fabricated on a 1.5-mm-thick Rogers RT5880, a 1-mm-thick FR4, and a 0.5-mm-thick Rogers RT5880-can effectively detect the direction of rotation, measure the angle of rotation and angular velocity with reasonable accuracy.
机译:本文介绍了一种基于改进的互补分体环谐振器(CSRR)的技术,以检测角位移和旋转方向,具有高分辨率和宽动态范围内的灵敏度。所提出的微波平面传感器利用传感器几何形状的不对称性,并根据反射系数的相对相的变化来测量旋转角度。传感器包括可移动改性的CSRR(转子)和具有在接地平面(定子)中的圆形缺陷的微带线。通过选择基板材料和转子厚度,传感器可以设计成在不同的操作频率下工作。提出了一种传感器的理论模型,然后是涉及等效电路模拟,全波计算和测量结果的详细数值分析。使用定位误差估计和气隙分析,发现基于相变测量的技术比单独基于幅度测量的技术更好。测量角度旋转的最大灵敏度被发现是每1度旋转的反射系数的相对相位的4.3度。传感器的角度测量范围为-90度至+90度。传感器 - 在0.5mm厚的rogersTT5880基板上制造的定子,并在1.5mm厚的罗杰RT5880,1毫米厚的FR4和0.5mm厚的RT5880上制造的三个转子 - 可以有效地检测旋转方向,以合理的精度测量旋转角度和角速度。

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