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Locally Resonant Cavity Cell Model for Electromagnetic Band Gap Structures

机译:电磁带隙结构的局部共振腔单元模型

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摘要

Mushroom-like electromagnetic band gap (EBG) structures exhibit unique electromagnetic properties that have found a wide range of electromagnetic device applications. This paper focuses on the local resonance behaviors of EBG structures, and a simply locally resonant cavity cell (LRCC) model for mushroom-like EBG structures is presented to gain insight to the physical mechanism of the EBG structures and the interaction of electromagnetic waves with EBG structures. The LRCC model proposes two kinds of main resonance modes: One is the mono-polarized mode that accurately predicts the position of the surface wave suppression bandgap, which is equivalent to the LC parallel resonance based on quasistatic assumption in principle, and the other is the cross-coupling polarized mode that exhibits some interesting resonant phenomena, which has not been observed previously. Parametric studies including the radius effect of the metal plated vias are effectively performed by using the LRCC model. Some numerical simulations and experiments of EBG structures, such as square, triangle, and hexagon lattices, are given to illustrate the applications and validation of LRCC model proposed by this paper.
机译:蘑菇状的电磁带隙(EBG)结构具有独特的电磁特性,已发现了广泛的电磁设备应用。本文着重研究EBG结构的局部共振行为,并提出了一种蘑菇状EBG结构的简单局部共振腔单元(LRCC)模型,以了解EBG结构的物理机理以及电磁波与EBG的相互作用结构。 LRCC模型提出了两种主要的共振模式:一种是单极化模式,可以精确地预测表面波抑制带隙的位置,其原理上等效于基于准静态假设的LC并联共振,而另一种是交叉耦合极化模式表现出一些有趣的共振现象,这是以前没有观察到的。使用LRCC模型可以有效地执行参数研究,包括镀金属通孔的半径效应。给出了一些EBG结构的数值模拟和实验,例如正方形,三角形和六边形格子,以说明本文提出的LRCC模型的应用和验证。

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