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A compact triband antipodal Vivaldi antenna with frequency selective surface inspired director for IoT/WLAN applications

机译:紧凑型捆绑条对抗VivalDI天线,具有频率选择性表面启发IOT / WLAN应用程序主任

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In this paper, an antipodal triband Vivaldi antenna operating in 2.4/5.2/5.8 GHz bands has been presented for WLAN/IoT applications. The proposed antipodal Vivaldi antenna has meander line shaped slotted lines, which are structured on the edges of exponentially tapered antipodal metallic branches and frequency selective surface (FSS) inspired director in the front part of the exponentially tapered patches on both top and bottom sides of the substrate. The meander line shaped slots on the tapered antipodal metallic branches have been utilized to improve the impedance bandwidth whereas FSS inspired director has RF performance effect on the enhancement of the gain and suppression of the side lobe levels in WLAN/IoT frequency bands. This FSS inspired director has the structural geometries in the form of meta-material based FSS consisting of an array of the sub-wavelength rectangular patches. These FSS structures are designed by global and local optimization processes using fast and efficient meta-heuristic algorithms, honey bee mating optimization (HBMO) and Differential Evolutionary. The optimized antenna model has been prototyped with the use of 3D printed substrate material based on PLA Filament-Polar White RBX-PLA-WH002 having predetermined filling form factor to obtain the desired substrate permittivity in the operating frequency bands. The simulated results of the proposed antenna design are in good agreement with the measured results. Furthermore the experimental results verify that the propotyped antipodal Vivaldi antenna has better RF performance as compared with the counterpart alternative designs in the literature. It can be concluded that the proposed antipodal Vivaldi antenna is a promising candidate for WLAN/IoT applications with high RF performance and easy integration into the microwave circuits.
机译:本文介绍了在2.4 / 5.2 / 5.8 GHz频段中运行的反二维牵引Vivaldi天线,用于WLAN / IOT应用程序。所提出的反双向VivalDI天线具有曲折线形开槽线,其在指数锥形的抗彼得金属分支和频率选择表面(FSS)的边缘上构造在指数锥形斑块的前部的前部和底侧的前部的频率选择表面基质。锥形反彼得金属分支上的曲折线形槽已经利用来改善阻抗带宽,而FSS启发导演对WLAN /物联网频带中的侧瓣电平的增益和抑制具有RF性能影响。该FSS启发导演具有基于元材料的FSS形式的结构几何形状,该FSS由亚波长矩形贴片的阵列组成。这些FSS结构由全球和局部优化过程设计,使用快速高效的元启发式算法,蜂蜜蜜蜂交配优化(HBMO)和差分进化。通过基于PLA细丝 - 极性白色RBX-PLA-WH002的3D印刷基板材料在具有预定填充形状因子中的使用以获得所需的频带中所需的基板介电常数,已经通过了优化的天线模型。所提出的天线设计的模拟结果与测量结果吻合良好。此外,实验结果验证了与文献中的对应替代设计相比具有更好的RF性能。可以得出结论,所提出的反双向Vivaldi天线是WLAN /物联网应用的有希望的候选者,具有高RF性能,并且容易地集成到微波电路中。

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