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首页> 外文期刊>IEEE Microwave and Guided Wave Letters >Mutual coupling between waveguide apertures mounted on a common conducting surface using a time- and Fourier-gated pulsed FDTD method
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Mutual coupling between waveguide apertures mounted on a common conducting surface using a time- and Fourier-gated pulsed FDTD method

机译:使用时间和傅立叶门控脉冲FDTD方法安装在同一导电表面上的波导孔之间的相互耦合

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摘要

A time and Fourier gated pulsed finite-difference-time-domain (FDTD) algorithm for computing mutual coupling between waveguide apertures is formulated. The method uses an incident pulse of short time duration (wide bandwidth) and a wideband absorbing boundary condition (ABC) for lossless waveguides. It is capable of the computation of scattered or mutually coupled fields even if the intensity of the required fields is lower than the inherent reflection levels of the free space artificial truncation planes. The method is illustrated by computing the mutual coupling between two rectangular waveguides mounted on a common groundplane and bounded by a parallel plate waveguide.
机译:提出了用于计算波导孔径之间相互耦合的时间和傅立叶门控脉冲有限差分时域算法。该方法使用短持续时间(宽带)的入射脉冲和用于无损波导的宽带吸收边界条件(ABC)。即使所需场的强度低于自由空间人造截断平面的固有反射水平,它也能够计算散射场或相互耦合的场。通过计算安装在公共接地板上并由平行平板波导界定的两个矩形波导之间的互耦合来说明该方法。

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