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FDTD method with a conformal polygonal mesh and perfectly matched layer absorbing boundary condition

机译:具有共形多边形网格和完美匹配的层吸收边界条件的FDTD方法

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The accuracy of the finite-difference time-domain (FDTD) method in microwave circuit simulation depends significantly on the accuracy with which the computational grid resolves the structure's geometry, especially when it has curved boundaries (e.g., dielectric resonator filters). Body-conformal grids allow for accurate resolution of the object, but complicate the implementation of absorbing boundary conditions (ABC). In order to address this conflict, we propose a new FDTD implementation in which triangular grids are used near the scatterer boundary, while rectangular grids are employed away from the scatterer to facilitate simple ABC. The improvement in accuracy by the new method is illustrated by its application to the scattering from a circular dielectric cylinder.
机译:有限差分时域(FDTD)方法在微波电路仿真中的精度在很大程度上取决于计算网格解析结构几何形状的精度,尤其是当它具有弯曲边界时(例如介电共振器滤波器)。保形网格允许物体的精确分辨率,但使吸收边界条件(ABC)的实现复杂化。为了解决此冲突,我们提出了一种新的FDTD实现方式,其中在散射体边界附近使用了三角形网格,而在散射体附近则采用了矩形网格,以简化简单的ABC。通过将新方法应用于圆形介质圆柱体的散射,可以说明这种新方法所带来的精度提高。

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