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Comparative Analysis of Capacitive Sensors with Different Geometrical layouts for Cable Insulation Degradation Detection

机译:不同几何布局对电缆绝缘劣化检测的电容传感器的比较分析

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This paper presents a comparative analysis between Interdigital Capacitor (IDC) sensor and Serpentine Capacitive (SRC) sensor. The effects of electrode layouts on sensor performance are studied by means of finite element simulation where the geometrical dimensions (except electrode length) and material characteristics of both sensors are identical. Conformal IDC and SRC sensors with equal sensor area are modeled on a cable surface. The simulation results show a tradeoff between IDC and SRC sensors in terms of sensitivity and penetration depth. The SRC sensor shows 13.3% increase in sensitivity and 16.8% increase in capacitance compared to the IDC sensor, though the electric field penetration depth of the SRC sensor is 18.8% lower than the IDC sensor. In addition, the effects of change in electrode width, inter-electrode gap, and number of electrodes on SRC and IDC sensor's comparative performance are evaluated.
机译:本文介绍了争端电容器(IDC)传感器和蛇形电容(SRC)传感器之间的比较分析。 通过有限元模拟研究电极布局对传感器性能的影响,其中两个传感器的几何尺寸(电极长度除外)和材料特性是相同的。 具有相等传感器区域的共形IDC和SRC传感器在电缆表面上进行建模。 仿真结果在灵敏度和穿透深度方面显示了IDC和SRC传感器之间的权衡。 与IDC传感器相比,SRC传感器的灵敏度增加13.3%,电容增加16.8%,但SRC传感器的电场穿透深度比IDC传感器低18.8%。 此外,评估电极宽度,电极间隙相互间隙和电极的数量对SRC和IDC传感器的比较性能的影响。

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