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Structure and EM-driven design of novel compact UWB slot antenna

机译:新型紧凑型UWB缝隙天线的结构和电磁驱动设计

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摘要

In this study, a structure and design optimisation procedure of a novel compact ultra-wideband (UWB) slot antenna has been presented. In order to achieve small size of the structure and maintain acceptable electrical performance, a sufficiently large number of geometry parameters have been introduced. These include a stepped-impedance feed line and a meandered slot with all of dimensions being parameterised and subject to optimisation. All parameters are simultaneously adjusted using automated electromagnetic (EM)-simulation-driven optimisation algorithm. The design process is oriented towards explicit size reduction of the antenna structure. Penalty function approach is utilised to control the reflection response. In order to reduce the computational cost of the optimisation process, variable-fidelity EM models are utilised. The footprint of the optimised antenna is only 8.93 × 17.9 mm (160 mm2) while maintaining reflection below the –10 dB threshold in the entire UWB frequency range. The antenna has been favourably compared with the state-of-the-art compact structures in terms of the size. The obtained numerical results are supported by measurements of the fabricated antenna prototype.
机译:在这项研究中,提出了一种新型紧凑型超宽带(UWB)缝隙天线的结构和设计优化程序。为了实现结构的小尺寸并保持可接受的电性能,已经引入了足够大量的几何参数。其中包括阶梯式阻抗馈线和曲折槽,所有尺寸均已参数化并经过优化。使用自动电磁(EM)模拟驱动的优化算法可以同时调整所有参数。设计过程的目标是显着减小天线结构的尺寸。利用罚函数法来控制反射响应。为了减少优化过程的计算成本,使用了可变保真度EM模型。经过优化的天线的占地面积仅为8.93×17.9 mm(160 mm2),同时在整个UWB频率范围内将反射保持在–10 dB阈值以下。就尺寸而言,该天线已与先进的紧凑型结构进行了比较。所获得的数值结果得到所制造天线原型的测量的支持。

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