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Circuit analysis and optimisation of SIW branch line coupler with improved modelling of small metallic post in FDTD

机译:改进的FDTD中小金属柱建模的SIW支线耦合器的电路分析和优化

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摘要

In this study an improved model of small metallic post has been used in finite-difference time-domain (FDTD) method. This model has the advantages of wide range stability for different values of post radius, good accuracy and easy formulation. By using this model accurate results have been obtained in FDTD with large mesh size and therefore memory and calculation time have been reduced. Moreover circuit model has been used for the analysis and optimisation of substrate-integrated waveguide (SIW) branch line coupler. In this model a circuit is decomposed into several two or multi ports sub-circuits. Next, the proposed FDTD model is used to determine the scattering parameters of the sub-circuits. With a proper connection of the scattering parameters of these sub-circuits, the scattering parameters of the overall structure have been determined. Based on the improved post model in FDTD and using the circuit model a branch line SIW coupler with wider bandwidth has been designed and fabricated.
机译:在这项研究中,一种改进的小金属桩模型已用于时域有限差分法(FDTD)中。该模型的优点是对于不同的柱半径值具有宽范围的稳定性,良好的精度和易于制定的优点。通过使用该模型,在具有较大网格尺寸的FDTD中获得了准确的结果,因此减少了内存和计算时间。此外,电路模型已用于衬底集成波导(SIW)支线耦合器的分析和优化。在该模型中,电路被分解为几个两个或多个端口的子电路。接下来,所提出的FDTD模型用于确定子电路的散射参数。通过正确连接这些子电路的散射参数,可以确定整个结构的散射参数。基于FDTD中改进的后置模型,并使用电路模型,设计并制造了具有更宽带宽的分支线SIW耦合器。

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