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Use of the G-TFSF and AFP methods to study scattering from 3D defects in edges or wedges

机译:使用G-TFSF和AFP方法研究边缘或楔形中3D缺陷的散射

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In 2002 Anantha and Taflove proposed a generalized total-field/scattered-field (G-TFSF) formulation to facilitate the study of infinite scatterers, such as wedges [IEEE Trans. Antennas and Propagat., 50(10):1337–1349, 2002]. In the G-TFSF method, portions of the TFSF boundary are embedded in the perfectly match layer (PML) that terminates the grid. To account for the effect the PML has on the incident field, the equations used to correct the fields along the TFSF boundary employed scalar correction factors. These scalar factors do not account for the fact that the PML is dispersive. Thus, where the TFSF boundary passes through the PML there is leakage of spurious fields in excess of what it would be if one were to account for the dispersion within the PML.
机译:在2002年,Anantha和Taflove提出了一种通用的总场/散射场(G-TFSF)公式,以促进对无限散射体(例如楔形[IEEE Trans。 Antennas and Propagat。,50(10):1337-1349,2002]。在G-TFSF方法中,部分TFSF边界嵌入到终止网格的完全匹配层(PML)中。为了解决PML对入射场的影响,用于校正沿TFSF边界的场的方程式采用了标量校正因子。这些标量因素不能解释PML是分散的这一事实。因此,在TFSF边界穿过PML的地方,杂散场的泄漏超过了考虑到PML内的色散的情况。

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