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Loewner approach model order reduction in hybrid BI-FEM solution for the design of frequency selective surfaces

机译:混合BI-FEM解决方案中Loewner方法的模型降阶,用于频率选择性表面的设计

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A Loewner matrix data-driven model order reduction technique for fast frequency sweep in full-wave solution in large finite frequency selective surfaces is detailed. A hybrid Boundary Integral-Finite Element Domain Decomposition Method is addressed to accurately predict the electromagnetic behavior of these structures. A reduced-order model is built up by means of simulation scatering parameters. A Loewner matrix approach is taken into account to provide a tangential interpolation to output data. As a result, a dynamical system representation fitting the simulation data is obtained, and further electromagnetic insight can be obtained from this system representation.
机译:详细介绍了适用于大型有限频率选择面的全波解决方案中快速频率扫描的Loewner矩阵数据驱动的模型降阶技术。提出了一种混合边界积分有限元域分解方法,以准确预测这些结构的电磁行为。通过模拟调整参数建立了降阶模型。考虑使用Loewner矩阵方法来提供切向插值以输出数据。结果,获得了适合模拟数据的动力学系统表示,并且可以从该系统表示获得进一步的电磁学见解。

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