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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Artificial neural network based metasurface inspired planar frequency reconfigurable antenna for wireless applications
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Artificial neural network based metasurface inspired planar frequency reconfigurable antenna for wireless applications

机译:基于人工神经网络的METASURFAFE启发了无线应用的平面频率可重新配置天线

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摘要

The growing interest in attaining various appealing features of wireless communication systems has motivated researchers to design innovative antennas. This paper analyzes the behavior of a low profile artificial neural networkbased metasurface (MS) inspired two-layered frequency reconfigurable antenna (ANN-MSFRA) using planar technology. The designed two-layered structure is a combination of two substrates mounted one above the other, having no air gap between them. The prototype of the proposed antenna is fabricated on Rogers RO4350B material having permittivity (ε_r) = 3.48, and thickness (h) = 1.524 mm. The MS is represented as an artificially generated periodical array of H and I-shaped metallic inclusions. Numerically analyzed results validate the double negative properties of metamaterial. To verify the effectiveness of the projected two-layered approach, the performance of the reconfigurable antenna is analyzed through both simulations and measurements. The antenna successfully reconfigures the operating frequency from 4.86 to 5.89 GHz, covering the operating bandwidth of 1.03 GHz with a fractional tuning range of 19.1%. The presented simulated and measured outcome provides a positive correlation.The developed ANN model suggested for the estimation of specific output parameters shows minimum error during analysis and synthesis.
机译:越来越兴趣地实现无线通信系统的各种吸引力特征具有设计设计人员来设计创新天线。本文分析了使用平面技术的低调人工神经网络基于元表面(MS)启发的两层频率可重新配置天线(ANN-MSFRA)的行为。设计的两层结构是两个基板的组合,其安装在另一个上方,在它们之间没有气隙。所提出的天线的原型在具有介电常数(ε_R)= 3.48,厚度(H)= 1.524mm的rogers ro4350b材料上制造。 MS表示为H和I形金属夹杂物的人工产生的周期性阵列。数值分析结果验证了超材料的双负性特性。为了验证预计的两层方法的有效性,通过模拟和测量分析可重新配置天线的性能。天线成功地将工作频率从4.86重新配置为5.89GHz,涵盖1.03GHz的操作带宽,分数调谐范围为19.1%。所提出的模拟和测量结果提供了正相关。建议用于估计特定输出参数的ANN模型显示出分析和合成期间的最小误差。

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