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LEGO brick boundary with a penetrating PEC structure

机译:具有穿透性PEC结构的LEGO砖边界

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An enhanced version of the Linear Embedding via Green's Operators (LEGO) method is introduced to analyse complex 3-D metallic structures. In order to change certain parts of a complex structure without recalculating the parameters of the entire structure we have applied a domain-decomposition method to divide the structure into segments. The segments are then associated with sub-domains, also known as bricks, to separate them from the rest of the structure. The bricks are formed in such a way to close the space around the object and each brick is analysed separately before we combine them together to obtain the parameters of the entire structure. In this way we also increase computational efficiency, distinguish between parts with different dynamic mesh range and coupling level. To ensure connectivity between all the parts of a complex structure inside different bricks we have introduced ports. Each port represents a set of Rao-Wilton-Glisson (RWG) functions associated with a pair of triangles located on the metallic structure and halved by two brick boundaries. We have used the Electric Field Integral Equation (EFIE) together with the Method of Moments (MoM) to solve for each brick and for the entire structure. Comparisons between the direct solution, which solves EFIE directly over the structure, and the LEGO approach are shown to prove the concept.
机译:引入了通过格林算子(LEGO)方法进行线性嵌入的增强版本,以分析复杂的3-D金属结构。为了更改复杂结构的某些部分而无需重新计算整个结构的参数,我们应用了域分解方法将结构划分为多个部分。然后将这些片段与子域(也称为积木)相关联,以将其与结构的其余部分分开。积木以封闭对象周围空间的方式形成,在我们将它们组合在一起以获得整个结构的参数之前,将分别对每块积木进行分析。这样,我们还可以提高计算效率,区分具有不同动态网格范围和耦合级别的零件。为了确保不同砖块内复杂结构的所有部分之间的连通性,我们引入了端口。每个端口代表一组Rao-Wilton-Glisson(RWG)函数,这些函数与位于金属结构上并被两个砖块边界减半的一对三角形相关。我们使用电场积分方程(EFIE)和矩量法(MoM)来求解每块砖块和整个结构。通过直接解决方案(可以直接在结构上解决EFIE)与LEGO方法进行比较,证明了这一概念。

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