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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Plane-Wave Time-Domain Accelerated Radiation Boundary Kernels for FDTD Analysis of 3-D Electromagnetic Phenomena
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Plane-Wave Time-Domain Accelerated Radiation Boundary Kernels for FDTD Analysis of 3-D Electromagnetic Phenomena

机译:用于3D电磁现象的FDTD分析的平面波时域加速辐射边界核

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Truncating finite difference time domain meshes using exact radiation boundary conditions is computationally expensive. The computational bottleneck stems from the global nature of the resulting boundary update scheme, which calls for the evaluation of retarded-time boundary integrals at each time step. The classical evaluation of such integrals requires O(N_(s)~(2)) operations per time step where N_(s) is the number of spatial field sampling points on the boundary. Here, the plane wave time domain algorithm is used to evaluate retarded-time boundary integrals in O(N_(s) log~(2) N_(s)) operations per time step and thereby accelerate finite difference time domain solvers that impose exact radiation boundary conditions. The effectiveness of the resulting approach and its computational complexity are demonstrated through several numerical examples.
机译:使用精确的辐射边界条件截断有限差分时域网格在计算上是昂贵的。计算瓶颈源于最终边界更新方案的全局性质,该方案要求在每个时间步长评估延迟时间边界积分。对此类积分的经典评估需要每个时间步进行O(N_(s)〜(2))个操作,其中N_(s)是边界上空间场采样点的数量。在这里,平面波时域算法用于评估每个时间步长O(N_(s)log〜(2)N_(s))个操作中的延迟时间边界积分,从而加速施加精确辐射的有限差分时域求解器边界条件。通过几个数值示例证明了所得方法的有效性及其计算复杂性。

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