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Two novel amplitude-only methods for complex permittivity determination of medium- and low-loss materials

机译:两种新颖的仅振幅法测定中损耗和低损耗材料的介电常数

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摘要

It is well known that there is no unique solution for complex permittivity determination of medium- and low-loss materials using amplitude-only measurements at one fixed frequency. In this paper, we propose two novel amplitude-only methods for one complex permittivity determination of these materials. The first method uses at least three amplitude-only measurements at different frequencies. For a change in permittivity over frequency, we considered two different approximations (zero order and higher order). The second method utilizes amplitude-only measurements at critical frequencies which result in maximum or minimum amplitudes of scattering parameters. It is shown that at these frequencies, the expressions for scattering parameters simplify and then one permittivity determination becomes possible. We derived two simple objective functions, which depend on only one variable, for the second method. In this sense, the second method greatly reduces the computation times for permittivity determination. For validation of both methods, complex scattering parameter measurements of two polytetrafluoro-ethylene (PTFE) and one soda-borosilicate glass (Corning 7750) samples fitted precisely into two waveguide holders are conducted at X-band (8.2-12.4 GHz), and their complex permittivities are determined by different techniques.
机译:众所周知,对于在一个固定频率上仅进行幅度测量的中低损耗材料的复介电常数测定,并没有唯一的解决方案。在本文中,我们提出了两种新颖的仅振幅法来测定这些材料的复介电常数。第一种方法在不同频率下至少使用三个幅度测量。对于介电常数随频率的变化,我们考虑了两种不同的近似值(零阶和更高阶)。第二种方法利用临界频率处的仅幅度测量,这会导致散射参数的最大或最小幅度。结果表明,在这些频率下,散射参数的表达式得以简化,从而可以确定一种介电常数。对于第二种方法,我们导出了两个简单的目标函数,它们仅依赖于一个变量。从这个意义上讲,第二种方法大大减少了电容率确定的计算时间。为了验证这两种方法,分别在X波段(8.2-12.4 GHz)上进行了两个聚四氟乙烯(PTFE)和一个钠硼硅玻璃(Corning 7750)样品的精确散射参数测量,这些样品正好安装在两个波导支架中。复杂的介电常数由不同的技术确定。

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