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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Parametrized Local Reduced-Order Models With Compressed Projection Basis for Fast Parameter-Dependent Finite-Element Analysis
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Parametrized Local Reduced-Order Models With Compressed Projection Basis for Fast Parameter-Dependent Finite-Element Analysis

机译:具有压缩投影基础的参数化局部降阶模型,用于快速参数相关的有限元分析

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摘要

This paper proposes an automated parametric local model-order reduction scheme for the expedited design of microwave devices using the full-wave finite-element method (FEM). The approach proposed here results in parameterized reduced-order models (ROMs) that account for the geometry and material variation in the selected subregion of the structure. In each subregion, a parameter-dependent projection basis is generated by concatenating several local bases that correspond to different parameter values, yielding a small, dense ROM. The process is automated and uses an adaptive scheme guided by a local goal-oriented error estimator to select points in the parameter space at which a local basis needs to be computed. A two-stage basis compression technique is also proposed to remove the redundancy from the projection basis and yields compact macromodels. Numerical examples, including FE analysis of a fifth-order filter with seven geometric variables as parameters, demonstrate that the approach provides a significant reduction in computational time while preserving the accuracy of the simulations.
机译:本文提出了一种自动参数局部模型降阶方案,用于采用全波有限元方法(FEM)的微波设备的快速设计。此处提出的方法导致参数化降阶模型(ROM),该模型考虑了结构的选定子区域中的几何形状和材料变化。在每个子区域中,通过串联对应于不同参数值的几个局部碱基来生成依赖于参数的投影基础,从而产生一个小的密集ROM。该过程是自动化的,并使用由面向本地目标的误差估计器指导的自适应方案来选择参数空间中需要计算本地基础的点。还提出了一种两阶段的基础压缩技术,以消除投影基础上的冗余并产生紧凑的宏模型。数值示例,包括以七个几何变量作为参数的五阶滤波器的有限元分析,表明该方法在保持仿真精度的同时,显着减少了计算时间。

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