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Multi-objective design optimization of antenna structures using sequential domain patching with automated patch size determination

机译:自动补丁尺寸确定的顺序域修补天线结构的多目标设计优化

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摘要

In this article, a simple yet efficient and reliable technique for fully automated multi-objective design optimization of antenna structures using sequential domain patching (SDP) is discussed. The optimization procedure according to SDP is a two-step process: (i) obtaining the initial set of Pareto-optimal designs representing the best possible trade-offs between considered conflicting objectives, and (ii) Pareto set refinement for yielding the optimal designs at the high-fidelity electromagnetic (EM) simulation model level. For the sake of computational efficiency, the first step is realized at the level of a low-fidelity (coarse-discretization) EM model by sequential construction and relocation of small design space segments (patches) in order to create a path connecting the extreme Pareto front designs obtained beforehand. The second stage involves response correction techniques and local response surface approximation models constructed by reusing EM simulation data acquired in the first step. A major contribution of this work is an automated procedure for determining the patch dimensions. It allows for appropriate selection of the number of patches for each geometry variable so as to ensure reliability of the optimization process while maintaining its low cost. The importance of this procedure is demonstrated by comparing it with uniform patch dimensions.
机译:在本文中,讨论了使用顺序域修补(SDP)的天线结构的简单但高效可靠的技术优化技术。根据SDP的优化过程是一个两步的过程:(i)获得代表考虑冲突目标的最佳权衡的初始帕累托最优设计集,(ii)Pareto集合改进,用于产生最佳设计高保真电磁(EM)仿真模型水平。为了计算效率,通过顺序构造和重新定位小型设计空间段(补丁)来实现第一步,以便在小型设计空间段(补丁)的重新安置,以创建一个连接极端帕累托的路径预先获得的前面设计。第二阶段涉及通过重用第一步中获取的EM模拟数据来构造的响应校正技术和局部响应表面近似模型。这项工作的主要贡献是用于确定修补程序尺寸的自动化程序。 It allows for appropriate selection of the number of patches for each geometry variable so as to ensure reliability of the optimization process while maintaining its low cost.通过将其与均匀的贴片尺寸进行比较来证明该程序的重​​要性。

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