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A Time-Domain Reflectometry Method with Variable Needle Pulse Width for Measuring the Dielectric Properties of Materials

机译:变针脉冲宽度的时域反射法测量材料的介电性能

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Time-domain reflectometry (TDR) methods used for measuring the dielectric properties of materials mostly utilize step or needle electrical pulses of constant amplitudes and shapes. Our novel approach enables determining the dielectric relaxation time of a sample using the analysis of the amplitudes of reflected pulses of two widths, in addition to bulk dielectric permittivity and electrical conductivity commonly obtained by the TDR technique. The method was developed for various values of electrical conductivity and relaxation time using numerical simulations of a five-rod probe placed in a material with complex dielectric permittivity described by the Debye model with an added electrical conductivity term. The characterization of amplitudes of two pulses of selected widths was done with regard to the dielectric parameters of simulated materials. The required probe parameters were obtained solely from numerical simulations. Verification was performed for the probe placed in aqueous KCl solutions with 14 different electrical conductivity values. The determined relaxation time remained roughly constant and independent of electrical conductivity. The obtained electrical conductivity agreed with the reference values. Our results indicate that the relaxation time, dielectric permittivity and electrical conductivity of the tested solutions can be simultaneously determined using a simple analysis of the amplitude and reflection time of two needle pulses of different widths.
机译:用于测量材料介电性能的时域反射法(TDR)方法主要利用幅度和形状恒定的阶跃或针状电脉冲。除了通常通过TDR技术获得的介电常数和电导率外,我们的新方法还可以通过分析两个宽度的反射脉冲的幅度来确定样品的介电弛豫时间。该方法是通过使用五杆探针的数值模拟开发的,用于各种电导率和弛豫时间,该探针位于Debye模型描述的具有复杂介电常数的材料中,并带有附加的电导率项。关于模拟材料的介电参数,对选定宽度的两个脉冲的幅度进行了表征。所需的探针参数仅通过数值模拟获得。对置于14种不同电导率值的KCl水溶液中的探针进行了验证。所确定的弛豫时间大致保持恒定,并且与电导率无关。所获得的电导率与参考值一致。我们的结果表明,通过对两个不同宽度的针状脉冲的幅度和反射时间进行简单分析,可以同时确定被测溶液的弛豫时间,介电常数和电导率。

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