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A hybrid time-domain discontinuous galerkin-boundary integral method for electromagnetic scattering analysis

机译:电磁散射分析的时域混合不连续伽辽金边界积分方法

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摘要

A scheme hybridizing discontinuous Galerkin time-domain (DGTD) and time-domain boundary integral (TDBI) methods for accurately analyzing transient electromagnetic scattering is proposed. Radiation condition is enforced using the numerical flux on the truncation boundary. The fields required by the flux are computed using the TDBI from equivalent currents introduced on a Huygens' surface enclosing the scatterer. The hybrid DGTDBI ensures that the radiation condition is mathematically exact and the resulting computation domain is as small as possible since the truncation boundary conforms to scatterer's shape and is located very close to its surface. Locally truncated domains can also be defined around each disconnected scatterer additionally reducing the size of the overall computation domain. Numerical examples demonstrating the accuracy and versatility of the proposed method are presented. © 2014 IEEE.
机译:提出了一种将不连续伽勒金时域(DGTD)方法和时域边界积分(TDBI)方法相结合的方案,以准确地分析瞬态电磁散射。使用截断边界上的数字通量强制辐射条件。通量使用TDBI通过从封闭散射体的惠更斯表面上引入的等效电流计算出通量所需的场。混合DGTDBI确保辐射条件在数学上是精确的,并且由于截断边界符合散射体的形状并且非常靠近其表面,因此所得的计算域尽可能小。还可以在每个断开的散射点周围定义局部截断的域,从而进一步减小了整个计算域的大小。数值算例表明了该方法的准确性和通用性。 ©2014 IEEE。

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