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Improved Discrete-Time Boundary Condition for the Thin-Wire FDTD Analysis of Lossy Insulated Cylindrical Antennas Located in Lossy Media

机译:改进了位于有损介质中的有损绝缘圆柱天线的薄线FDTD分析的离散时间边界条件

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摘要

For the thin-wire (TW) finite-difference time-domain (FDTD) analysis of lossy insulated antennas surrounded by lossy media, an improved discrete-time boundary condition (DTBC) at the interface is proposed here. In previous TW-FDTD techniques, the DTBC formulations on the material discontinuity between the lossy insulation and lossy surrounding media were derived from the dielectric constitutive relation under the uniform field approximation (UFA) over each time step. In this paper, to achieve higher accuracy, an improved DTBC is formulated from Maxwell’s equations under the linear field approximation (LFA) and subsequently corrected in the TW-FDTD update equation. By comparing the input impedances of Teflon-insulated cylindrical monopole antennas located in wet soils, we show that the proposed approach provides higher accuracy than previous techniques.
机译:对于由有损介质包围的有损绝缘天线的有限线(TW)有限差分时域(FDTD)分析,这里提出了界面处的改进的离散时间边界条件(DTBC)。在先前的TW-FDTD技术中,DTBC在每次步骤上都从均匀场近似(UFA)下的介电本构关系之间导出了损耗绝缘和围绕介质之间的材料不连续性。在本文中,为了实现更高的准确性,在线性场近似(LFA)下的Maxwell等式中配制了一种改进的DTBC,随后在TW-FDTD更新方程中校正。通过比较位于湿土中的Teflon绝缘圆柱形单极天线的输入阻抗,我们表明所提出的方法提供比以前技术更高的精度。

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  • 作者

    Seung-Yeup Hyun;

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  • 年度 2021
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  • 原文格式 PDF
  • 正文语种 eng
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