电容式编码器中转子极板对电容测量的影响

Emrehan Yavşan, M. Karali, Bariş Gokce, M. A. Erişmiş
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引用次数: 2

摘要

电容式编码器的活动板称为转子,固定板称为定子。本文分析了电容式编码器中转子板对电容测量的影响。编码器用于角位置测量。特别是在机器人应用领域发生旋转运动的大多数应用中,它们是首选的。采用电容式编码器技术可以进一步扩展编码器的应用领域。电容式编码器技术的基础是测量编码器极板之间的电容。由于电容随编码器板的重叠面积而变化,编码器板的形状和图案直接影响电容测量。因此,电容式编码器极板的选择必须正确。关于电容式编码器极板的选择研究很少。可见,目前的研究一般继续对类似类型的转子型式。本研究针对我们正在开发的电容式编码器提出了多种转子板。在此基础上,对转子模式进行了数学表达,并对采用转子模式的电容式编码器进行了比较。通过计算所提出的电容式编码器板间的等效电容进行比较。研究了不同材料和形状转子对电容性测量的影响。从而为同类电容式传感器的有效开发做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Rotor Plates on Capacitive Measurement in Capacitive Encoders
The moving plates of the capacitive encoders are called rotors and the fixed plates are called stators. In this study, the effects of the rotor plates on capacitive measurement for capacitive encoders are analyzed. Encoders are used in angular position measurement. They can be preferred especially in most applications where rotational motion occurs in the robotic application areas. The application areas of the encoders can be further extended with the capacitive encoder technology. The capacitive encoder technology is based on measuring the capacitances between the encoder plates. As the capacitances vary depending on the overlapping areas of the encoder plates, the shapes and the patterns of the encoder plates directly affect the capacitive measurement. Therefore, the capacitive encoder plate selections must be made correctly. There are very few studies on the selection of the capacitive encoder plates. It is seen that the current studies generally continue on a similar type rotor patterns. Various rotor plates are proposed in this study for the capacitive encoder that we are in the development process. After the rotor patterns are expressed mathematically and the capacitive encoders using rotors with these patterns are compared. The comparison process was made by calculating the equivalent capacitance between the proposed capacitive encoder plates. The effects of rotors with different materials and patterns on the capacitive measurement were investigated. Thus, a contribution was made to the effective development of similar capacitive sensors.
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