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首页> 外文期刊>International journal of numerical modelling >Acceleration of the partial element equivalent circuit method with uniform tessellation-Part Ⅱ: Frequency domain solver with interpolation and reuse of partial elements
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Acceleration of the partial element equivalent circuit method with uniform tessellation-Part Ⅱ: Frequency domain solver with interpolation and reuse of partial elements

机译:均匀细分的部分元素等效电路方法的加速-第二部分:部分元素的插值和重用的频域求解器

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摘要

Stated the importance of accelerating electromagnetic numerical methods to perform accurate and fast virtual prototyping, addressing electromagnetic compatibility/electromagnetic interference issues, in this work, we propose a novel strategy for fast frequency sweeps arising in the partial element equivalent circuit method. Since, as shown in Part I, many geometrical configurations are repeated for a uniform tessellation of 3D structures, the calculation of volume and surface integrals required to fill the partial element matrices can be performed only for a subset of the total elements. Furthermore, since these integrals slowly change with frequency, they can be easily interpolated. Finally, since the interpolation is used over a reduced number of coefficients, their computation can be performed in a vectorialized fashion. All this process leads to an impressive acceleration in the computation of partial elements for the entire frequency sweep by paying a little overhead of random access memory usage. The efficiency and accuracy of the proposed method are demonstrated through its application to 2 pertinent problems.
机译:陈述了加速电磁数值方法以执行准确,快速的虚拟原型,解决电磁兼容性/电磁干扰问题的重要性,在这项工作中,我们提出了一种新的策略,用于在部分元件等效电路方法中产生快速的频率扫描。如第一部分所示,由于为3D结构的均匀细分重复了许多几何配置,因此只能对全部元素的子集执行填充局部元素矩阵所需的体积和表面积分的计算。此外,由于这些积分随频率缓慢变化,因此可以轻松地对其进行插值。最后,由于在减少的系数数量上使用了插值,因此可以以矢量化的方式执行其计算。所有这些过程通过支付少量的随机存取存储器使用开销,就可以在整个频率扫描过程中显着加快部分元素的计算速度。通过将其应用于两个相关问题,证明了所提方法的效率和准确性。

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