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Variable-Fidelity Simulation Models and Sparse Gradient Updates for Cost-Efficient Optimization of Compact Antenna Input Characteristics

机译:可变保真度仿真模型和稀疏梯度更新以经济高效地优化紧凑型天线输入特性

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摘要

Design of antennas for the Internet of Things (IoT) applications requires taking into account several performance figures, both electrical (e.g., impedance matching) and field (gain, radiation pattern), but also physical constraints, primarily concerning size limitation. Fulfillment of stringent specifications necessitates the development of topologically complex structures described by a large number of geometry parameters that need tuning. Conventional optimization procedures are typically too expensive when the antenna is evaluated using high-fidelity electromagnetic (EM) analysis, otherwise required to ensure accuracy. This paper proposes a novel surrogate-assisted optimization algorithm for computationally efficient design optimization of antenna structures. In the paper, the optimization of antenna input characteristic is presented, specifically, minimization of the antenna reflection coefficient in a given bandwidth. Our methodology involves variable-fidelity EM simulations as well as a dedicated procedure to reduce the cost of estimating the antenna response gradients. The latter is based on monitoring the variations of the antenna response sensitivities along the optimization path. The procedure suppresses the finite-differentiation-based sensitivity updates for variables that exhibit stable gradient behavior. The proposed algorithm is validated using three compact wideband antennas and demonstrated to outperform both the conventional trust region algorithm and the pattern search procedure, as well as surrogate-based procedures while retaining acceptable design quality.
机译:用于物联网(IoT)应用的天线的设计需要考虑几个性能指标,包括电气性能(例如阻抗匹配)和场强(增益,辐射方向图),还需要物理限制,主要是尺寸限制。为了满足严格的规范,必须开发由大量需要调整的几何参数描述的拓扑复杂的结构。当使用高保真电磁(EM)分析评估天线时,传统的优化程序通常太昂贵,否则需要确保准确性。针对天线结构的计算效率高的设计优化问题,本文提出了一种新的代理辅助优化算法。在本文中,提出了天线输入特性的优化,特别是在给定带宽下天线反射系数的最小化。我们的方法包括可变保真度EM仿真以及专用程序,以减少估计天线响应梯度的成本。后者基于监视沿优化路径的天线响应灵敏度的变化。该过程抑制了表现出稳定梯度行为的变量的基于有限差分的灵敏度更新。使用三个紧凑型宽带天线对提出的算法进行了验证,并证明其在保持可接受的设计质量的同时,优于传统的信任区域算法和模式搜索过程以及基于代理的过程。

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