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A new formulation for characterization of materials based on measured insertion transfer function

机译:一种基于测得的插入传递函数表征材料的新公式

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摘要

A widely used method for noncontact electromagnetic characterization of materials is based on the measurement of an insertion transfer function. This function, defined as the ratio of two phasor signals measured in the presence and absence of the material under test, is related to the dielectric constant of the material through a complex transcendental equation. Solving this equation requires a numerical two-dimensional root search technique, which is often time consuming due to slow convergence and the existence of spurious solutions. In this paper, a new formulation is presented, which facilitates the evaluation of complex dielectric constant of low-loss materials by means of real equations, thus requiring only one-dimensional root search techniques. Two sample materials are measured, and it is shown that their dielectric constants obtained from the exact complex equation and the new formulation are in excellent agreement. The new formulation reduces the computation time significantly and is highly accurate for the characterization of low-loss materials.
机译:一种广泛用于材料非接触式电磁表征的方法是基于对插入传递函数的测量。该函数定义为在存在和不存在被测材料的情况下测得的两个相量信号之比,它通过复验超越方程与材料的介电常数有关。解决此方程需要数值二维根搜索技术,由于收敛速度慢和存在虚假解,因此这通常很耗时。在本文中,提出了一种新的公式,该公式有助于通过实数方程评估低损耗材料的复介电常数,因此仅需要一维根搜索技术。测量了两种样品材料,结果表明从精确的复数方程和新配方获得的介电常数非常吻合。新配方大大减少了计算时间,并且对于低损耗材料的表征非常准确。

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