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Characterization of cavity-backed conformal antennas and arrays using a hybrid finite element method with tetrahedral elements

机译:使用具有四面体单元的混合有限元方法表征背腔的共形天线和阵列

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摘要

A hybrid finite-element formulation has been proposed for characterization of the scattering and radiation properties of microstrip patch antennas and arrays residing in a cavity (Jin and Volakis, 1991). The technique combines the finite-element (FE) and boundary integral (BI) methods to formulate a system for the solution of the fields at the aperture and those within the substrate. In the previous implementation, rectangular bricks/patches were used for a discretization of the cavity volume/superstrate. These elements inherently limit the applicability of the method to rectangular shape patches and cavities, and to specific feed structures. To avoid such restrictions on the geometrical adaptability of the FE-BI method, the authors consider its implementation using tetrahedral/triangular elements for discretizing the cavity volume/aperture. The tetrahedral elements permit excellent geometrical adaptability. The characterization (scattering/radiation) of nonrectangular patches and broadband radiators is considered. The method's ability to model practical shape and corporate feeds is demonstrated and results are presented for the antenna/array radar cross section in and out of the operating band.
机译:已经提出了一种混合有限元公式,用于表征腔内微带贴片天线和阵列的散射和辐射特性(Jin和Volakis,1991)。该技术结合了有限元(FE)和边界积分(BI)方法,以制定一个用于求解孔口处以及基片内场的系统。在先前的实现中,矩形砖/贴片用于空腔体积/上层的离散化。这些要素固有地限制了该方法对矩形补丁和空腔以及特定进料结构的适用性。为了避免对FE-BI方法的几何适应性造成这种限制,作者考虑采用四面体/三角形元素来离散化腔体体积/孔径的方法。四面体元素具有出色的几何适应性。考虑了非矩形贴片和宽带辐射器的特征(散射/辐射)。演示了该方法对实际形状和公司馈送进行建模的能力,并给出了工作频带内外的天线/阵列雷达横截面的结果。

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