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首页> 外文期刊>IEE Proceedings. Part H >2D FDTD modelling of objects with curved boundaries, using embedded boundary orthogonal grids
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2D FDTD modelling of objects with curved boundaries, using embedded boundary orthogonal grids

机译:使用嵌入式边界正交网格对具有弯曲边界的对象进行2D FDTD建模

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摘要

An FDTD algorithm was developed using an embedded boundary orthogonal grid system. The algorithm is based on the complex Laplace equation to implement conformal mapping that minimises the magnitudes of the mesh gradients and therefore leads to the smoothest coordinate line distribution over the solution domain. In conjunction with the global rectangular meshes, the local non-orthogonal grids provide versatility of geometry. There is no need to perform interpolation on the boundaries between the local and global grids. As a result, computational time and memory requirements are substantially reduced. The field solution to the unbounded Laplace equation in nonorthogonal coordinates is obtained, and is used as the exciting source to expedite the convergence of the FDTD computations. Numerical examples show good agreement with the results presented in previous publications, both guided wave and scattering problems.
机译:使用嵌入式边界正交网格系统开发了FDTD算法。该算法基于复杂的Laplace方程来实现共形映射,该映射使网格梯度的大小最小化,从而导致在求解域上最平滑的坐标线分布。结合全局矩形网格,局部非正交网格可提供通用的几何形状。无需在局部网格和全局网格之间的边界上执行插值。结果,大大减少了计算时间和存储需求。获得了非正交坐标系中无界拉普拉斯方程的场解,并将其用作激励源以加快FDTD计算的收敛速度。数值算例表明与先前出版物中给出的结果(导波和散射问题)具有很好的一致性。

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