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首页> 外文期刊>International journal of numerical modelling >A novel trust‐region–based algorithm with flexible Jacobian updates for expedited optimization of high‐frequency structures
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A novel trust‐region–based algorithm with flexible Jacobian updates for expedited optimization of high‐frequency structures

机译:一种新颖的基于信任区域的算法,具有灵活的雅可比更新,可快速优化高频结构

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摘要

Simulation-driven design closure is mandatory in the design of contemporary high-frequency components. It aims at improving the selected performance figures through adjustment of the structure's geometry (and/or material) parameters. The computational cost of this process when employing numerical optimization is often prohibitively high, which is a strong motivation for the development of more efficient methods. This is especially important in the case of complex and multiparameter structures. In the paper, an expedited trust-region-based algorithm for electromagnetic (EM)-driven design optimization of high-frequency structures is proposed. The presented technique involves a flexible sensitivity update scheme depending on the relative design changes with respect to the trust-region size, as well as a direction of the design relocation and its alignment with the coordinate system axes. This allows for performing finite-differentiation-based sensitivity updates less frequently and, consequently, brings considerable computational savings. Numerical results obtained for an ultra-wideband antenna and a microwave coupler demonstrate that the proposed algorithm outperforms the reference procedure in terms of the number of EM simulations necessary to arrive at the optimized solution (around 50%). At the same time, the design quality loss is minor.
机译:在现代高频组件的设计中,必须强制采用仿真驱动的设计闭包。它旨在通过调整结构的几何(和/或材料)参数来改善所选的性能指标。当采用数值优化时,该过程的计算成本通常高得令人望而却步,这是开发更有效方法的强烈动机。这在复杂和多参数结构的情况下尤其重要。提出了一种基于信任域的快速算法,用于电磁驱动的高频结构设计优化。所提出的技术涉及灵活的灵敏度更新方案,该方案取决于相对于信任区大小的相对设计更改以及设计重定位的方向及其与坐标系轴的对齐。这允许较少频繁地执行基于有限微分的灵敏度更新,因此带来了可观的计算节省。从超宽带天线和微波耦合器获得的数值结果表明,所提出的算法在获得优化解决方案所需的EM仿真次数方面(优于50%)优于参考程序。同时,设计质量损失很小。

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