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Three-dimensional finite-difference time-domain simulation on coaxial transmission line for broadband dielectric characterization

机译:同轴传输线上的三维有限差分时域仿真,用于宽带介质表征

摘要

In this work, a part of a coaxial transmission line is used as a sample holder where the propagation of electromagnetic waves in the range of 500 MHz is studied using three-dimensional (3D) finite-difference time domain (FDTD) method. This study presents the results from the numerical simulations of electromagnetic waves in a mixture of dielectric materials. The effective relative permittivity of the mixture is calculated by recording one of the electric field components (Ey) of the transmitted and reflected electromagnetic pulses in the transmission line. The complex frequency spectra of these time-domain signals are then obtained by taking the Fourier transforms of the respective signals. These spectra are then used to calculate the complex transmission and reflection coefficients for the sample. The analysis of raw data is performed using open source package, GNU Octave. Finally a numerical procedure is developed to convert the raw data into an effective dielectric property of the mixture of materials. The influence of water contents on dielectric properties is studied using samples made from different mixtures of soil, water, and air. The results show that the effective dielectric permittivities of the mixtures are highly dependent on the soil’s moisture content. Strong frequency dependence in the dielectric properties is observed especially at the low end of frequency range which can be attributed to the presence of the DC conductivity of water (5
机译:在这项工作中,一部分同轴传输线被用作样本保持器,其中使用三维(3D)有限差分时域(FDTD)方法研究了500 MHz范围内电磁波的传播。这项研究提出了介电材料混合物中电磁波数值模拟的结果。混合物的有效相对介电常数是通过记录传输线中已发射和已反射电磁脉冲的电场分量(Ey)之一来计算的。然后,通过对各个信号进行傅立叶变换,获得这些时域信号的复频谱。这些光谱然后用于计算样品的复数透射和反射系数。原始数据的分析使用开源软件包GNU Octave进行。最后,开发了一种数值程序,将原始数据转换为材料混合物的有效介电性能。使用由土壤,水和空气的不同混合物制成的样品研究了水含量对介电性能的影响。结果表明,混合物的有效介电常数很大程度上取决于土壤的水分含量。介电性能的频率依赖性很强,尤其是在频率范围的低端,这可以归因于水的直流电导率的存在(5

著录项

  • 作者

    Noor Ahmad Sarimah;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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