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Accuracy analysis of the nonrigorous second-order absorbing boundary condition applied to large curved finite elements

机译:施加到大弯曲有限元的非抗体二阶吸收边界条件的精度分析

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We investigate the accuracy of the nonrigorous symmetric second-order absorbing boundary condition (ABC) implemented in the higher order large domain finite element method (FEM) technique for electromagnetic analysis in the frequency domain. The electric field is expanded using edge based curl-conforming polynomial basis functions and geometrical modeling is done by curved hexahedral finite elements. The numerical examples show that radar cross section (RCS) of a benchmark scatterer is predicted more accurately when the divergence term is included (although not rigorously) in the computations. Performance of the implemented second-order ABC is compared with the first-order ABC and the rigorous second-order ABC.
机译:我们研究了在较高阶大域有限元方法(FEM)技术中实现的非富集对称二阶吸收边界条件(ABC)的准确性,用于频域的电磁分析。使用基于边缘的卷曲符合多项式基团函数扩展电场,通过弯曲的六面体有限元完成几何模拟。数值示例表明,当包括在计算中(虽然没有严格地)时,更准确地预测基准散射体的雷达横截面(RCS)。将实施的二阶ABC的性能与一阶ABC和严格的二阶ABC进行比较。

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