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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Fast EM-Driven Optimization Using Variable-Fidelity EM Models and Adjoint Sensitivities
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Fast EM-Driven Optimization Using Variable-Fidelity EM Models and Adjoint Sensitivities

机译:使用可变保真度EM模型和伴随灵敏度的快速EM驱动优化

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摘要

A robust and computationally efficient technique for microwave design optimization is presented. Our approach exploits variable-fidelity electromagnetic (EM) simulation models and adjoint sensitivities. The low-fidelity EM model correction is realized by means of space mapping (SM). In the optimization process, the SM parameters are optimized together with the design itself, which allows us to keep the number of both low- and high-fidelity simulations at low levels. The algorithm is demonstrated using two examples. Experimental validation is also provided.
机译:提出了一种稳健且计算效率高的微波设计优化技术。我们的方法利用了可变保真度电磁(EM)仿真模型和伴随灵敏度。低保真EM模型校正是通过空间映射(SM)来实现的。在优化过程中,SM参数与设计本身一起进行了优化,这使我们可以将低保真度和高保真度的仿真次数保持在较低水平。使用两个示例演示该算法。还提供了实验验证。

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