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A planar capacitive sensor for 2D long-range displacement measurement

机译:用于二维远程位移测量的平面电容传感器

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A planar capacitive sensor (PCS) capable of 2D large-scale measurement is presented in this paper. Displacement interpretation depends on independently measuring the periodic variation in capacitance caused by the change in the overlapping area of sensing electrodes on a moving plate and a fixed plate. By accumulating the number of quarters in each direction and the specific position in the final quarter, the large-scale measurement is fulfilled. Displacements in X- and Y-direction can be measured independently and simultaneously. Simulation shows that a shorter gap distance and a longer electrode guarantee better sensitivity. Experiments based on a PCS test bench demonstrate that the PCS has a sensitivity of 0.198 mV/μm and a resolution of 0.308 μm. An electric fringe effect and other possible measurement errors on displacement interpretation accuracy are discussed. The study confirms the high potential of PCSs as innovative 2D long-range displacement sensors.
机译:本文提出了一种能够进行二维大规模测量的平面电容传感器(PCS)。位移的解释取决于独立测量由移动板和固定板上的感应电极重叠区域的变化引起的电容的周期性变化。通过累积每个方向上的四分之一数量以及最后四分之一的特定位置,可以实现大规模测量。 X和Y方向上的位移可以独立地同时测量。仿真表明,更短的间隙距离和更长的电极可确保更高的灵敏度。基于PCS测试台的实验表明,PCS的灵敏度为0.198 mV /μm,分辨率为0.308μm。讨论了电条纹效应和其他可能的测量误差对位移解释精度的影响。这项研究证实了PCS作为创新的2D远程位移传感器的巨大潜力。

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