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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Characterization of three-dimensional open dielectric structures using the finite-difference time-domain method
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Characterization of three-dimensional open dielectric structures using the finite-difference time-domain method

机译:使用时域有限差分法表征三维开放电介质结构

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摘要

Millimeter and submillimeter wave three-dimensional (3-D) open dielectric structures are characterized using the finite-difference time-domain (FDTD) technique. The use of FDTD method allows for the accurate characterization of these components in a very wide frequency range. The first structure characterized through FDTD for validation purposes is a mm-wave image guide coupler. The derived theoretical results for this structure are compared to experimental data and show good agreement. Following this validation, a sub-mm wave transition from a strip-ridge line to a layered ridge dielectric waveguide (LRDW) in open environment is analyzed, and the effects of parasitic radiation on electrical performance are studied. The transition is found to be very efficient over a wide sub-mm frequency band which makes it useful for a variety of applications. In addition to the transition, a sub-mm wave distributed directional coupler made of the LRDW is extensively studied using the FDTD method as an analysis tool. Furthermore, an iterative procedure based on the FDTD models is used to design a 3-dB coupler with a center frequency of 650 GHz and negligible radiation loss. This successful design shows that the FDTD technique can be used not only as an analysis method, but also as a design tool to provide designs which take into account all high frequency parasitic effects.
机译:使用有限差分时域(FDTD)技术来表征毫米波和亚毫米波三维(3-D)开放电介质结构。 FDTD方法的使用允许在非常宽的频率范围内准确表征这些组件。出于验证目的,通过FDTD表征的第一个结构是毫米波图像波导耦合器。该结构的理论推导结果与实验数据进行了比较,并显示出良好的一致性。经过此验证,分析了在开放环境中从条状脊线到层状脊介电波导(LRDW)的亚毫米波过渡,并研究了寄生辐射对电性能的影响。发现过渡在亚毫米宽的频带上非常有效,这使其可用于多种应用。除了过渡之外,还使用FDTD方法作为分析工具广泛研究了由LRDW制成的亚毫米波分布式定向耦合器。此外,基于FDTD模型的迭代过程用于设计中心频率为650 GHz且辐射损失可忽略的3-dB耦合器。这项成功的设计表明,FDTD技术不仅可以用作分析方法,还可以用作提供考虑所有高频寄生效应的设计的设计工具。

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