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Hexagonal fractal ultra-wideband antenna using Koch geometry with bandwidth enhancement

机译:使用Koch几何形状并具有带宽增强功能的六角形分形超宽带天线

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In this study, a design approach to achieve multiresonance phenomena in ultra-wideband (UWB) bandwidth using fractal geometry is investigated. The introduction of Koch fractal geometry in monopole as well as in the ground plane of the antenna generates additional resonances, which helps to achieve entire UWB operational bandwidth. Therefore the bandwidth is increased up to 122%. Moreover, the fractal nature of the antenna also facilitates to obtain the stable radiation pattern. The compact dimension 31 mm × 28 mm of the antenna exhibits nearly omnidirectional radiation pattern, with good reflection coefficient over the entire UWB frequency range. The proposed prototype is fabricated and its measured results are in good agreement with the simulated one. The time-domain analysis of the antenna is performed and it is found that fidelity factor is better than 0.81, which shows good pulse preserving capability of the antenna.
机译:在这项研究中,研究了一种使用分形几何结构在超宽带(UWB)带宽中实现多共振现象的设计方法。在单极天线以及天线接地平面中引入科赫分形几何形状会产生额外的谐振,这有助于实现整个UWB工作带宽。因此,带宽增加到122%。此外,天线的分形特性也有助于获得稳定的辐射图。天线的紧凑尺寸31 mm×28 mm表现出几乎全向的辐射方向图,在整个UWB频率范围内具有良好的反射系数。所提出的原型已制成,其测量结果与模拟结果吻合良好。进行了天线的时域分析,发现保真度优于0.81,表明天线具有良好的脉冲保持能力。

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