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Hybrid model for probe-fed rectangular microstrip antennas with shorting pins

机译:带短路针的探针馈送矩形微带天线的混合模型

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摘要

For a probe-fed microstrip antenna, it is quite common to employ the cavity model to find the field distribution under the patch and other electrical properties. Therefore, a multiport analysis technique based on the cavity model is usually employed to predict the input impedance of a probe-fed microstrip antenna with shorting pins. However, this approach does not provide any information about the field distribution under the patch with the shorting pins, which is usually used to calculate the radiation properties of the patch antenna. In this study, shorting pins are considered as current sources with unknown amplitudes, and the field distribution under the patch is obtained as a linear superposition of the contributions from each source via cavity model. Then, the unknown current densities over the shorting pins are determined by implementing the boundary condition of the tangential electric field on the pins. This is a hybrid approach because the field distribution is calculated from the cavity model, and the current densities over the shorting pins are obtained from the point matching of the resulting field distributions over the shorting conductors. The input impedance results found from this approach agree extremely well with those obtained from the multiport analysis, which shows that the proposed approach predicts both the input impedance and the field distribution under the patch. In addition, since the feeding probe is also made of PEC, the electric field under the patch should satisfy the boundary condition on this conductor as well. In the application of the cavity model, this is always ignored, with the assumption that the source probe is too thin to affect the field distribution under the patch significantly. In this study, the boundary condition of the electric field is implemented over the source, and its effect on the field distribution, in turn on the resonant frequency, is demonstrated.
机译:对于由探针馈送的微带天线,采用空腔模型来查找贴片和其他电气特性下的场分布是很常见的。因此,通常采用基于腔模型的多端口分析技术来预测带短路针的探针馈送微带天线的输入阻抗。但是,这种方法没有提供有关带有短路针的贴片下的场分布的任何信息,通常用于计算贴片天线的辐射特性。在这项研究中,短路引脚被认为是幅度未知的电流源,而贴片下方的场分布是通过腔模型将每个源的贡献线性叠加而成的。然后,通过在引脚上实现切向电场的边界条件来确定短路引脚上的未知电流密度。这是一种混合方法,因为根据空腔模型计算了场分布,并且根据短路导体上所得场分布的点匹配获得了短路销上的电流密度。通过这种方法发现的输入阻抗结果与通过多端口分析获得的结果非常吻合,这表明所提出的方法可以预测输入阻抗和贴片下的场分布。另外,由于馈电探针也由PEC制成,因此贴片下的电场也应满足该导体上的边界条件。在腔模型的应用中,这总是被忽略,假设源探针太细而不会显着影响贴片下的场分布。在这项研究中,电场的边界条件是在源上实现的,并证明了其对场分布的影响,进而对谐振频率产生了影响。

著录项

  • 作者

    Mutlu, S.; Aksun, M.I.;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 English
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