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Bandwidth Enhancement of Single-Layer Microstrip Reflectarrays with Multi-Dipole Elements

机译:具有多偶极子元素的单层微带反射阵列的带宽增强

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The gain bandwidth limit of a single-layer microstrip reflectarray is analyzed using multi-dipole elements. By observing the reflection phase characteristics of the multi-dipole elements with different numbers of dipoles, it is shown how the bandwidth can be enhanced by increasing the number of element resonant structures. The fundamental limit of the bandwidth enhancement is then derived by analyzing the coupling between the surface wave and the incident plane wave. It is shown that the surface wave can be excited even with the plane wave of normal incidence on the reflectarray and that the excitation frequency of the surface wave is dominated by array parameters and is almost independent of the number of resonant structures. The degradation of the element reflection characteristics caused by the surface wave, which limits the reflectarray bandwidth, is investigated. By comparing the radiation characteristics of three reflectarrays with three-, five-, and seven-dipole element, respectively, the analysis of the bandwidth enhancement and its limit is verified. The measured 1-dB gain bandwidth of the three-dipole element reflectarray is 25.12%, and the bandwidth is enhanced to 33.52% with the five-dipole element. However, because of the surface wave, no further bandwidth enhancement is achieved when the seven-dipole element is used, as predicted.
机译:使用多偶极子元素分析了单层微带反射阵列的增益带宽极限。通过观察具有不同偶极数的多偶极子元件的反射相位特性,可以看出如何通过增加元件谐振结构的数量来提高带宽。然后,通过分析表面波和入射平面波之间的耦合来得出带宽增强的基本极限。结果表明,即使在反射阵列上垂直入射的平面波也能激发表面波,并且表面波的激发频率由阵列参数决定,并且几乎与谐振结构的数量无关。研究了由表面波引起的元件反射特性的退化,这限制了反射阵列的带宽。通过将三个反射阵列分别与三偶极,五偶极和七偶极子元件的辐射特性进行比较,可以验证带宽增强及其极限的分析。三偶极元件反射阵列测得的1-dB增益带宽为25.12%,而五偶极元件的带宽提高到33.52%。然而,由于表面波的原因,如所预测的,当使用七偶极子元件时,无法实现进一步的带宽增强。

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