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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Hybridization of curvilinear time-domain integral equation andtime-domain optical methods for electromagnetic scattering analysis
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Hybridization of curvilinear time-domain integral equation andtime-domain optical methods for electromagnetic scattering analysis

机译:曲线时域积分方程与时域光学方法的混合用于电磁散射分析

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摘要

Full-field solutions for scattering and similar problems become prohibitively expensive for electrically large bodies. Fortunately, broadly “optical” methods become accurate as larger bodies are considered. Often, however, large bodies have significant features that are not electrically large and here hybrid approaches are appropriate. We present a novel hybridization of time-domain integral equation methods with time-domain physical optics (PO). For both methods, an isoparametric curvilinear treatment is adopted. The application of the approach is demonstrated by investigating the convergence of the solution for a pulse incident on a large target with a small feature (a 16-pulsewidth plate with a ~1/3-pulsewidth sphere placed centrally just in front of it). It is demonstrated that a full-field solution for the sphere and a fairly small region around the sphere, coupled with the PO solution of the remainder of the plate, produces a converged prediction of the time-dependent fields
机译:对于电子大物体,用于散射和类似问题的全场解决方案变得非常昂贵。幸运的是,考虑到较大的物体,广泛的“光学”方法变得准确。但是,大型物体通常具有很大的特征,这些特征在电气上并不大,因此在这里采用混合方法是合适的。我们提出了一种时域积分光学方法与时域物理光学(PO)的新型混合方法。对于这两种方法,均采用等参曲线处理。该方法的应用通过研究脉冲入射到具有小特征的大目标上的解决方案的收敛性得到证明(一个16脉冲宽度的板,一个1/3脉冲宽度的球体正好位于其前面)。结果表明,球体的全场解和球体周围很小的区域,再加上板块其余部分的PO解,都可以得出随时间变化的场的收敛预测

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