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ANALYSIS OF A CONCENTRIC COPLANAR CAPACITIVE SENSOR USING A SPECTRAL DOMAIN APPROACH

机译:使用光谱域方法分析同心共面电容传感器

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Previously, concentric coplanar capacitive sensors have been developed to quantitatively characterize the permittivity or thickness of one layer in multi-layered dielectrics. Electrostatic Green's functions due to a point source at the surface of one- to three-layered test-pieces were first derived in the spectral domain, under the Hankel transform. Green's functions in the spatial domain were then obtained by using the appropriate inverse transform. Utilizing the spatial domain Green's functions, the sensor surface charge density was calculated using the method of moments and the sensor capacitance was calculated from its surface charge. In the current work, the spectral domain Green's functions are used to derive directly the integral equation for the sensor surface charge density in the spectral domain, using Parseval's theorem. Then the integral equation is discretized to form matrix equations using the method of moments. It is shown that the spatial domain approach is more computationally efficient, whereas the Green's function derivation and numerical implementation are easier for the spectral domain approach.
机译:以前,已经开发了同心共面积电容传感器以定量表征多层电介质中的一层的介电常数或厚度。静电绿色的功能由于彼此的一到三层试验片的点源引起的,在河口变换下首先衍生在光谱域中。然后使用适当的逆变换获得空间域中的绿色功能。利用空间域绿色的功能,使用矩的方法计算传感器表面电荷密度,并且通过其表面电荷计算传感器电容。在当前的工作中,光谱域绿色的功能用于使用ParseVal定理直接导出光谱域中传感器表面电荷密度的整体方程。然后,离子方程被离散化以使用矩的方法形成矩阵方程。结果表明,空间域方法更加计算效率,而绿色的函数推导和数值实现更容易频谱域方法。

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