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Fast Globalized Gradient-Based Optimization of Multi-Band Antennas By Means Smart Jacobian Updates and Response Features

机译:基于智能雅可比更新和响应特征的快速基于梯度的多频带天线全局优化

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摘要

EM-driven optimization has become one of the most fundamental tools of modern antenna design. Complexity of contemporary antenna structures does not allow the theoretical insight to go beyond a conceptual stage. Fulfilling stringent performance requirements calls for a precise adjustment of the antenna dimensions in multi-parameter spaces. Solving such tasks is expensive when using conventional algorithms. Furthermore, global optimization is needed in many cases, which increases the level of design process difficulty. As a matter of fact, utilization of state-of-the-art population-based metaheuristics is prohibitive when the antenna is evaluated by means of full-wave EM analysis. This paper proposes a novel technique for globalized design optimization of multi-band antennas. Our approach adopts the accelerated trust-region gradient search with Jacobian change monitoring as well as response feature technology. The latter permits reliable allocation of the antenna resonances even if the initial design is poor and traditional local optimization techniques fail to find a satisfactory design. The algorithm is demonstrated using a dual-band uniplanar dipole antenna. The numerical results indicate that optimization can be performed at the cost typical for local search routines while retaining global search capabilities.
机译:EM驱动的优化已成为现代天线设计的最基本工具之一。当代天线结构的复杂性不允许理论上的见解超越概念阶段。为了满足严格的性能要求,需要精确调整多参数空间中的天线尺寸。当使用常规算法时,解决这些任务是昂贵的。此外,在许多情况下需要全局优化,这增加了设计过程的难度。实际上,当通过全波EM分析评估天线时,禁止使用基于最新技术的基于人口的元启发式方法。本文提出了一种新的技术,用于多频段天线的全球化设计优化。我们的方法采用带有雅可比变化监测和响应特征技术的加速信任区域梯度搜索。即使初始设计较差并且传统的局部优化技术无法找到令人满意的设计,后者也可以可靠地分配天线谐振。使用双频带单平面偶极天线演示了该算法。数值结果表明,可以在保留全局搜索功能的情况下以本地搜索例程的典型成本执行优化。

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