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Finite-Difference Time-Domain Modeling of Periodic Guided-Wave Structures and Its Application to the Analysis of Substrate Integrated Nonradiative Dielectric Waveguide

机译:周期导波结构的时差有限域建模及其在衬底集成非辐射介质波导分析中的应用

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摘要

The finite-difference time-domain (FDTD) method incorporating an equivalent resonant cavity model is presented for the modeling and analysis of guided-wave propagation characteristics of complex periodic structures. By transforming electromagnetic field variables into a new set of periodic variables, which can also be resolved from the Maxwell''s equations, one can convert a periodic guided-wave problem into an equivalent resonator problem. Thus, the FDTD method used for a resonant cavity problem can be adopted to simulate periodic guided-wave structures. In addition, the proposed FDTD algorithm can be extended to model lossy periodic propagation problems. In this study, the substrate integrated nonradiative dielectric waveguide, which is a special type of periodic guided-wave structure subject to a potential leakage loss due to its periodic gaps, is investigated as a showcase. The proposed method is first validated and is then used to analyze the guided-wave characteristics of substrate integrated nonradiative dielectric waveguides. It is shown that the substrate integrated nonradiative dielectric waveguide structure, which can easily be fabricated in planar form, has a well-behaved propagation property suitable for high-performance millimeter-wave circuit design.
机译:提出了结合等效谐振腔模型的时域有限差分法(FDTD),用于复杂周期结构的导波传播特性的建模和分析。通过将电磁场变量转换为一组新的周期变量(也可以从麦克斯韦方程组求解),可以将周期导波问题转换为等效谐振器问题。因此,可以采用用于共振腔问题的FDTD方法来模拟周期导波结构。另外,所提出的FDTD算法可以扩展到对有损周期性传播问题进行建模。在这项研究中,作为一个展示柜,研究了集成有衬底的非辐射介质波导,它是一种特殊类型的周期导波结构,由于其周期性间隙而容易遭受潜在的泄漏损耗。首先对提出的方法进行了验证,然后将其用于分析基片集成非辐射介质波导的导波特性。结果表明,可以容易地以平面形式制造的集成有衬底的非辐射介电波导结构具有适合高性能毫米波电路设计的良好的传播特性。

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