一种新型电容式传感器的理论分析与数字仿真

Dian-hong Yu, Ximin Li, Lin Li
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摘要

为了研究一种新的电容式传感器检测原理,本文提出了一种基于非平行极板边缘效应的电容式传感器。传感器的电容场包括极板间电场和边缘电场两部分。当特殊介质处于边缘电场中时,会改变边缘电场的电场线分布,引起传感器电容值的变化,从而可以实现对被检测物体的非接触检测。本文研究了边缘电场范围与传感器基本参数之间的关系。本文对传感器的模型和公式进行了理论分析,并用ANSYS对这些典型工程进行了仿真。结果表明,新型电容式传感器的检测原理合理、正确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical analysis and digital simulation of a new capacitive sensor
In order to research a new detection principle of capacitive sensor, a new capacitive sensor based on the edge effects of non-parallel polar plates is proposed in this paper. The capacitance field of the sensor includes two parts, the electric field between the polar plates and the edge electric field. When a special medium is in the edge electric field, it will change the distribution of the electric field line of the edge electric field and cause the change of the capacitance value of the sensor, and then the non-contact detection of the detected object can be realized. This paper studies the relationship between the range of the edge electric field and the basic parameters of the sensor. The model and formula of the sensor are analyzed theoretically in this paper, and these typical projects were simulated by ANSYS. The results show that the detection principle of the new capacitive sensor is reasonable and correct.
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