基于Floquet模态分析和MoM-GEC方法的近周期天线综合与优化

Nader Ben Latifa, T. Aguili
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引用次数: 3

摘要

本文提出了一种新的Floquet分析方法,用于计算一维和二维耦合周期天线系统的辐射。通过这种方式,可以通过使用基于傅立叶分析的新的相互作用表达式来证明对相互耦合的准确评估。然后,这项工作表明如何使用Floquet分析来研究在x和y方向上具有均匀振幅和线性相位分布的有限阵列。为了对所提出的结构进行建模,在谱域和空间域中给出了两个公式,其中矩(MoM)方法与广义等效电路(GEC)方法相结合。耦合周期天线的辐射方向图是通过改变频率、距离和Floquet状态等参数来显示的。对耦合天线阵列的三维辐射波束在几个转向角θs和耦合值dx下进行了分析和比较。该结构的模拟表明,在较高的耦合值下,方向性降低。天线辐射方向图中的副波瓣通过能量分散影响主波瓣增益,并且可以实现旁瓣电平(SLL)的显著增加。因此,辐射束在几个转向方向上的扫掠影响了天线系统的电磁性能:在转向角θs=π⁄3处的方向性受损更严重,具有19.99 dB,而在θs=0处的第二个方向性约为35.11 dB。该耦合结构的参数研究用于概念具有扫频辐射波束的智能周期天线。
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Synthesis and Optimization of Almost Periodic Antennas Using Floquet Modal Analysis and MoM-GEC Method
This paper presented a new Floquet analysis used to calculate the radiation for 1-D and 2-D coupled periodic antenna systems. In this way, an accurate evaluation of mutual coupling can be proven by using a new mutual interaction expression that was based on Fourier analysis. Then, this work indicated how Floquet analysis can be used to study a finite array with uniform amplitude and linear phase distribution in both x and y directions. To modelize the proposed structures, two formulations were given in a spectral and spatial domain, where the Moment (MoM) method combined with a generalized equivalent circuit (GEC) method was applied. Radiation pattern of coupled periodic antenna was shown by varying many parameters, such as frequencies, distance and Floquet states. The 3-D radiation beam of the coupled antenna array was analyzed and compared in several steering angles θs and coupling values dx. The simulation of this structure demonstrated that directivity decreased at higher coupling values. The secondary lobs in the antenna radiation pattern affected the main lobe gain by energy dispersal and considerable increasing of side lobe level (SLL) may be achieved. Therefore, the sweeping of the radiation beam in several steering directions affected the electromagnetic performance of the antenna system: the directivity at the steering angle θs = π⁄3 was more damaged and had 19.99 dB while the second at θs = 0 had about 35.11 dB. This parametric study of coupled structure used to concept smart periodic antenna with sweeping radiation beam.
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