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Multi-Fidelity Local Surrogate Model for Computationally Efficient Microwave Component Design Optimization

机译:计算效率高的微波组件设计优化的多保真度局部代理模型

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摘要

In order to minimize the number of evaluations of high-fidelity (“fine”) model in the optimization process, to increase the optimization speed, and to improve optimal solution accuracy, a robust and computational-efficient multi-fidelity local surrogate-model optimization method is proposed. Based on the principle of response surface approximation, the proposed method exploits the multi-fidelity coarse models and polynomial interpolation to construct a series of local surrogate models. In the optimization process, local region modeling and optimization are performed iteratively. A judgment factor is introduced to provide information for local region size update. The last local surrogate model is refined by space mapping techniques to obtain the optimal design with high accuracy. The operation and efficiency of the approach are demonstrated through design of a bandpass filter and a compact ultra-wide-band (UWB) multiple-in multiple-out (MIMO) antenna. The response of the optimized design of the fine model meet the design specification. The proposed method not only has better convergence compared to an existing local surrogate method, but also reduces the computational cost substantially.
机译:为了在优化过程中最小化对高保真度(“精细”)模型的评估,以提高优化速度并提高最佳求解精度,我们提供了一种健壮且计算效率高的多保真度局部代理模型优化提出了方法。该方法基于响应面近似原理,利用多保真度粗糙模型和多项式插值法构造了一系列局部代理模型。在优化过程中,迭代进行局部区域建模和优化。引入判断因素以提供用于本地区域大小更新的信息。最后的局部代理模型通过空间映射技术进行完善,从而以高精度获得最优设计。通过带通滤波器和紧凑型超宽带(UWB)多进多出(MIMO)天线的设计演示了该方法的操作和效率。精细模型的优化设计的响应符合设计规范。与现有的局部代理方法相比,该方法不仅具有更好的收敛性,而且大大降低了计算量。

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