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The application of the capacitor's physics to optimize capacitive angular-position sensors

机译:电容器物理在优化电容角位置传感器中的应用

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The distributions of the potential and charge density in a capacitive angular-position sensor with three electrode disks in an axis-symmetrical configuration have been found by creating a suitable physical model and solving Laplace's equation. The influences of geometrical parameters on the nonlinearity, which originates from the electric-field-bending effect, are discussed in detail for a capacitive angular-position sensor. The approximately analytical results are verified by a numerical analysis and are found to be very useful to predict the influences of geometrical nonidealities. The calculations are experimentally verified by using a novel, absolute angular-position sensor with a nonlinearity of less than /spl plusmn/17" and /spl plusmn/50" over measurement ranges of 15/spl deg/ and 90/spl deg/, respectively.
机译:通过创建合适的物理模型并求解拉普拉斯方程,已经找到了具有三个电极盘呈轴对称配置的电容式角位置传感器中电势和电荷密度的分布。对于电容角位置传感器,详细讨论了几何参数对非线性的影响,该影响源于电场弯曲效应。通过数值分析验证了近似分析结果,发现该结果对于预测几何非理想性的影响非常有用。通过使用一种新颖的绝对角度位置传感器,在15 / spl deg /和90 / spl deg /的测量范围内,其非线性小于/ spl plusmn / 17“和/ spl plusmn / 50”,可以对实验进行验证。分别。

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