New Wideband Antenna Arrays with Low Sidelobe Based on Space Filling Curves

S. El-Khamy, H. F. El-Sayed, A. Eltrass
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Abstract

This paper introduces a new design of wideband planar antenna arrays based on space-filling curves with low Side-Lobe Level (SLL). The unique geometrical features of such arrays are exploited to provide wideband operation and to avoid grating lobes in the radiation pattern even when the minimum spacing between elements is increased to one-wavelength. Three antenna array configurations based on space-filling curve, namely heighway dragon, twindragon and $Z_{2}$ heighway dragon arrays, are investigated and compared for various set of parameter regimes. Results reveal that the introduced array designs offer several highly desirable radiation pattern advantages over their conventional periodic planar array counterparts, including wideband operation, SLL reduction, and grating lobe elimination. This demonstrates the importance of the introduced array configuration as a promising design in modern wireless systems.
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基于空间填充曲线的新型低旁瓣宽带天线阵列
介绍了一种基于低旁瓣电平(SLL)的空间填充曲线的宽带平面天线阵列设计。这种阵列的独特的几何特征被利用来提供宽带操作,并避免光栅瓣在辐射模式,即使当元件之间的最小间距增加到一个波长。研究了基于空间填充曲线的三种天线阵列配置,即高度龙阵列、双龙阵列和$Z_{2}$高度龙阵列,并在不同的参数制度下进行了比较。结果表明,与传统的周期性平面阵列相比,所引入的阵列设计提供了几个非常理想的辐射方向图优势,包括宽带操作、SLL降低和光栅瓣消除。这证明了所介绍的阵列配置在现代无线系统中作为一种有前途的设计的重要性。
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