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Dielectric constant and loss factor of dielectric material using finite element method in a cavity

机译:使用有限元法在腔中使用有限元法的介电常数和损耗因子

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A numerical technique to estimate the dielectric constant and loss factor of a homogeneous dielectric material placed in an arbitrary shaped cavity has been developed. The values of S-parameters are measured experimentally by placing the sample in the cavity. Starting with a trial set of permittivity values, the FEM computation is carried out to match the S-parameters around the fundamental resonance frequency. The FEM routine is run several times while optimising the values of dielectric constant and conductivity of the sample. During the process of optimisation, eight different measures of error between computed and experimental values of complex S-parameters are examined. It is found that there is no single measure of error which can be minimised to estimate two parameters (dielectric constant and the loss factor) but the combination of errors has to be minimised to obtain the exact solution. The computer program can generate the solution with an accuracy of less than 0.01% in few hours on a Pentium based PC.
机译:已经开发了一种估计放置在任意形状腔中的均匀介电材料的介电常数和损耗因子的数值技术。通过将样品放入腔体中实验测量S参数的值。从试验介电常数值开始,执行有限元计算以匹配基本谐振频率周围的S参数。有组常规运行多次,同时优化样品的介电常数和电导率的值。在优化过程中,检查复杂S参数的计算和实验值之间的八种不同的误差措施。发现没有单一的误差测量可以最小化以估计两个参数(介电常数和损耗因子),但必须最小化误差的组合以获得精确的解决方案。计算机程序可以在基于Pentium PC上的几个小时内以小于0.01%的精度产生溶液。

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