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Incorporation of feed-network and circuit modeling into the time-domain finite element analysis of antenna arrays and microwave circuits

机译:将馈电网络和电路建模结合到天线阵列和微波电路的时域有限元分析中

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摘要

In this dissertation, accurate and efficient numerical algorithms are developed to incorporate the feed-network and circuit modeling into the time-domain finite element analysis of antenna arrays and microwave circuits. First, simulation of an antenna system requires accurate modeling of interactions between the radiating elements and the associated feeding network. In this work, a feed network is represented in terms of its scattering matrix in a rational function form in the frequency domain that enables its interfacing with the time-domain finite element modeling of the antenna elements through a fast recursive time-convolution algorithm. The exchange of information between the antenna elements and the feed network occurs through the incident and reflected modal voltages/currents at properly defined port interfaces. The proposed numerical scheme allows a full utilization of the advanced antenna simulation techniques, and significantly extends the current antenna modeling capability to the system level. Second, a hybrid field-circuit solver that combines the capabilities of the time-domain finite element method and a lumped circuit analysis is developed for accurate and efficient characterization of complicated microwave circuits that include both distributive and lumped-circuit components. The distributive portion of the device is modeled by the time-domain finite element method to generate a finite element subsystem, while the lumped circuits are analyzed by a SPICE-like circuit solver to generate a circuit subsystem. A global system for both the finite-element and circuit unknowns is established by combining the two subsystems through coupling matrices to model their interactions. For simulations of even more complicated mixed-scale circuit systems that contain pre-characterized blocks of discrete circuit elements, the hybrid field-circuit analysis implemented a systematic and efficient algorithm to incorporate multiport lumped networks in terms of frequency-dependent admittance matrices. Other advanced features in the hybrid field-circuit solver include application of the tree-cotree splitting algorithm and introduction of a flexible time-stepping scheme. Various numerical examples are presented to validate the implementation and demonstrate the accuracy, efficiency, and applications of the proposed numerical algorithms.
机译:本文提出了一种精确有效的数值算法,将馈电网络和电路建模纳入天线阵列和微波电路的时域有限元分析。首先,天线系统的仿真需要对辐射元件与相关馈电网络之间的相互作用进行精确建模。在这项工作中,以频域中的有理函数形式以其散射矩阵来表示馈电网络,从而使馈电网络能够通过快速递归时间卷积算法与天线元件的时域有限元建模进行接口。天线元件和馈电网络之间的信息交换是通过适当定义的端口接口处的入射和反射模态电压/电流发生的。提出的数值方案可以充分利用先进的天线仿真技术,并将当前的天线建模能力显着扩展到系统级。其次,开发了一种混合时域电路求解器,将时域有限元方法和集总电路分析功能结合在一起,可准确,高效地表征包括分布式和集总电路组件的复杂微波电路。器件的分布部分通过时域有限元方法建模以生成有限元子系统,而集总电路则通过类似SPICE的电路求解器进行分析以生成电路子系统。通过将两个子系统通过耦合矩阵组合起来以对它们的相互作用进行建模,从而建立了一个有限元和电路未知数的全局系统。为了仿真包含分立电路元件的预先表征块的甚至更复杂的混合比例电路系统,混合场电路分析实现了一种系统高效的算法,可以根据频率相关的导纳矩阵合并多端口集总网络。混合型现场电路求解器的其他高级功能包括树-树分割算法的应用以及灵活的时间步进方案的引入。给出了各种数值示例,以验证实现并证明所提出的数值算法的准确性,效率和应用。

著录项

  • 作者

    Wang Rui;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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