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A structure and computationally-efficient design closure of compact spline-parameterized UWB monopole antenna

机译:紧凑的花键参数化UWB单极天线的结构和计算有效的设计闭包

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In this paper, a structure and computationally-efficient simulation-driven design closure of spline-parameterized UWB monopole antenna has been presented. We start from a reference design which is a conventional monopole antenna with rectangular radiator and L-shaped ground plane stub. The antenna geometry is then modified by parameterizing the ground plane using splines. This introduces additional degrees of freedom that are utilized for reducing the antenna footprint through explicit numerical minimization of the antenna size. For the sake of computational efficiency we utilize sequential optimization of local response surface approximation (RSA) models of the antenna structure. Spline parameterization in conjunction with efficient optimization techniques allows us to reduce the antenna size from 180 mm2 of the reference design to just 163 mm2 while maintaining the antenna reflection below -10 dB in the entire UWB frequency range.
机译:本文提出了样条参数化UWB单极天线的结构和计算效率高的仿真驱动设计闭包。我们从参考设计开始,该参考设计是具有矩形辐射器和L形接地平面短线的常规单极天线。然后通过使用样条线对接地平面进行参数化来修改天线的几何形状。这引入了额外的自由度,这些自由度用于通过显着减小天线尺寸的数值来减少天线的占地面积。为了计算效率,我们利用天线结构的局部响应面近似(RSA)模型的顺序优化。样条参数化与有效的优化技术相结合,使我们可以将天线尺寸从参考设计的180 mm2减小到163 mm2,同时在整个UWB频率范围内将天线反射保持在-10 dB以下。

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