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Expedited antenna optimization with numerical derivatives and gradient change tracking

机译:利用数值衍生物和梯度变化跟踪加快天线优化

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Purpose The purpose of this study is to propose a framework for expedited antenna optimization with numerical derivatives involving gradient variation monitoring throughout the optimization run and demonstrate it using a benchmark set of real-world wideband antennas. A comprehensive analysis of the algorithm performance involving multiple starting points is provided. The optimization results are compared with a conventional trust-region (TR) procedure, as well as the state-of-the-art accelerated TR algorithms. Design/methodology/approach The proposed algorithm is a modification of the TR gradient-based algorithm with numerical derivatives in which a monitoring of changes of the system response gradients is performed throughout the algorithm run. The gradient variations between consecutive iterations are quantified by an appropriately developed metric. Upon detecting stable patterns for particular parameter sensitivities, the costly finite differentiation (FD)-based gradient updates are suppressed; hence, the overall number of full-wave electromagnetic (EM) simulations is significantly reduced. This leads to considerable computational savings without compromising the design quality. Findings Monitoring of the antenna response sensitivity variations during the optimization process enables to detect the parameters for which updating the gradient information is not necessary at every iteration. When incorporated into the TR gradient-search procedures, the approach permits reduction of the computational cost of the optimization process. The proposed technique is dedicated to expedite direct optimization of antenna structures, but it can also be applied to speed up surrogate-assisted tasks, especially solving sub-problems that involve performing numerous evaluations of coarse-discretization models. Research limitations/implications - The introduced methodology opens up new possibilities for future developments of accelerated antenna optimization procedures. In particular, the presented routine can be combined with the previously reported techniques that involve replacing FD with the Broyden formula for directions that are satisfactorily well aligned with the most recent design relocation and/or performing FD in a sparse manner based on relative design relocation (with respect to the current search region) in consecutive algorithm iterations. Originality/value Benchmarking against a conventional TR procedure, as well as previously reported methods, confirms improved efficiency and reliability of the proposed approach. The applications of the framework include direct EM-driven design closure, along with surrogate-based optimization within variable-fidelity surrogate-assisted procedures. To the best of the authors' knowledge, no comparable approach to antenna optimization has been reported elsewhere. Particularly, it surmounts established methodology by carrying out constant supervision of the antenna response gradient throughout successive algorithm iterations and using gathered observations to properly guide the optimization routine.
机译:目的本研究的目的是提出一种利用涉及整个优化运行梯度变化监测的数值衍生物的加速天线优化的框架,并使用基准的现实世界宽带天线展示它。提供了对涉及多个起点的算法性能的全面分析。将优化结果与传统的信任区域(TR)程序进行比较,以及最先进的加速TR算法。设计/方法/方法所提出的算法是利用数值衍生物的基于TR梯度的算法的修改,其中在整个算法运行过程中执行系统响应梯度的更改的监视。连续迭代之间的梯度变化通过适当开发的度量来量化。在检测特定参数灵敏度的稳定模式时,抑制了基于昂贵的有限差分(FD)的梯度更新;因此,全波电磁(EM)模拟的总数显着降低。这导致相当大的计算节省,而不会影响设计质量。调查结果监视优化过程期间的天线响应灵敏度变化,使得能够检测到每个迭代时不需要更新梯度信息的参数。当结合到TR梯度搜索过程中时,该方法允许降低优化过程的计算成本。所提出的技术致力于加快直接优化天线结构,但也可以应用于加速代理辅助任务,特别是求解涉及执行粗离散模型的许多评估的子问题。研究限制/影响 - 介绍的方法为加速天线优化程序的未来发展开辟了新的可能性。特别地,所提出的例程可以与先前报告的技术组合,该技术涉及用泡顿公式替换FD的用于以基于相对设计重定位的稀疏方式令人满意地与最近的设计重定位和/或执行FD对准关于当前搜索区域)在连续算法迭代中。针对传统TR手术的原创性/值基准测试,以及先前报告的方法,证实了所提出的方法的提高效率和可靠性。该框架的应用包括直接的EM驱动设计闭合,以及基于代理的优化在可变保真代理辅助程序中。据作者所知,在其他地方没有报道没有可比的天线优化方法。特别是,它通过在连续的算法迭代过程中持续监督天线响应梯度并使用收集的观察来正确指导优化例程来施加建立的方法。

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