Finite element simulation and capacitive analysis on coupling capacitor using complex variable method of quasi-electrostatic field

Yinyu Zhan, Jiahao Deng, Yong Ye, Shichuang Liu, Yuting Liu
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Abstract

Aimed at the accurate measurement of high-speed motion targets in Active Protection System, a capacitive analytic approach, based on complex variable method, was proposed for the planar capacitive coupling sensor working in quasi-electrostatic field. This approach, applying to analyze symmetry model, needs little calculation and more accurate. It directly reflects the relation between the capacitance and electrode structural parameters. The results show that increasing electrode diameter has a major influence on improving the sensitivity, and electrode spacing has no significant effect. Proper electrode spacing needs to be selected in order to meet the detection range and distance. A good agreement was obtained by the comparison of the theoretical results, experiment results and simulation results. These results contribute the experiment schemes improvement and optimization in the future work.
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准静电场复变法耦合电容器的有限元仿真与电容性分析
针对主动保护系统中高速运动目标的精确测量问题,提出了一种基于复变量法的平面电容耦合传感器准静电场电容解析方法。该方法适用于对称模型的分析,计算量小,精度高。它直接反映了电容与电极结构参数之间的关系。结果表明,增加电极直径对灵敏度的提高有重要影响,电极间距对灵敏度的提高影响不显著。为了满足检测范围和距离,需要选择合适的电极间距。通过对理论结果、实验结果和仿真结果的比较,得到了较好的一致性。这些结果为今后实验方案的改进和优化提供了依据。
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