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FDTD modeling of nonplanar microstrip antennas and coplanar structures applicable to electrooptic modulators.

机译:适用于电光调制器的非平面微带天线和共面结构的FDTD建模。

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摘要

The Finite Difference Time Domain (FDTD) method is limited by memory requirements and computation time when applied to large problems, complicated geometries or geometries with fine features. In this dissertation, an efficient analysis of such structures is carried out by employing several techniques in conjunction with the conventional FDTD method, which improve its computational efficiency significantly without sacrificing its accuracy.; The three-dimensional FDTD has been used to calculate the characteristic impedance and the microwave effective index of coplanar waveguide structures on Lithium Niobate (LiNbO3) single crystal substrates with a yttria-stabilized zirconia (YSZ) or SiO2 buffer layer. The results shown can be a useful source to predict the modulator characteristics. The effects of anisotropy of the LiNbO3 crystal are discussed. The comparison between the FDTD and quasi-static results shows good agreement.; Microstrip patch antennas find many practical applications in which they are mounted on curved surfaces such as those of aircraft and missiles, because of their major advantage of conformability. Radomes or superstrates are employed in practice to protect microstrip patch antennas from the environmental hazards such as rain, snow, and sand. The effects of curvature on the characteristics of a single microstrip patch antenna as well as the mutual coupling between two antennas are investigated. This investigation is performed by using the conformal FDTD method. First, the effects of deformation of antenna geometry on the antenna characteristics such as the resonant frequency, the input impedance, and the radiation pattern are discussed. Second, the effects of curvature on mutual coupling between microstrip antennas on curved surfaces are studied. The results show the strong effects of the different shaped substrates on the mutual coupling. The effects of the dielectric cover on the coupling between patches mounted on the curved surface can be expected to differ from those of planar models. Numerical results for the effects of superstrate permittivity and thickness on the mutual coupling between cylindrical-rectangular microstrip patch antennas are presented. The presented results in this dissertation are useful for the rigorous analysis of microstrip antenna arrays on conformed substrates in real-world applications.
机译:当应用于大问题,复杂的几何图形或具有优良特征的几何图形时,有限差分时域(FDTD)方法受内存需求和计算时间的限制。本论文采用几种技术结合传统的FDTD方法对这种结构进行了有效的分析,从而在不牺牲精度的情况下大大提高了计算效率。三维FDTD已用于计算具有氧化钇稳定的氧化锆(YSZ)或SiO2缓冲层的铌酸锂(LiNbO3)单晶衬底上共面波导结构的特性阻抗和微波有效折射率。所示结果可能是预测调制器特性的有用来源。讨论了LiNbO3晶体各向异性的影响。 FDTD与准静态结果的比较显示出很好的一致性。微带贴片天线由于其主要的一致性优势而被发现可安装在诸如飞机和导弹等曲面上的许多实际应用中。在实践中,采用天线罩或上覆板来保护微带贴片天线免受雨,雪和沙等环境危害。研究了曲率对单个微带贴片天线特性以及两个天线之间相互耦合的影响。该调查是通过使用保形FDTD方法进行的。首先,讨论了天线几何形状的变形对天线特性(如谐振频率,输入阻抗和辐射方向图)的影响。其次,研究了曲率对曲面上微带天线之间相互耦合的影响。结果表明,不同形状的基板对相互耦合有很强的影响。可以预期,电介质覆盖层对安装在曲面上的贴片之间的耦合的影响将不同于平面模型。给出了介电常数和厚度对圆柱矩形微带贴片天线相互耦合影响的数值结果。本文所提出的结果对于在实际应用中对贴壁基板上的微带天线阵列进行严格的分析很有用。

著录项

  • 作者

    Byun, Joonho.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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