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Generalised design method of broadband array antennas using curved geometry

机译:弯曲几何形状的宽带阵列天线的通用设计方法

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摘要

Curved array antennas offer increased degrees of freedom when antenna elements are configured in non-uniform geometries. This permits increased flexibility over control of pattern structure and increase in the bandwidth of operation. In this study, the authors present a generalised design method for broadband antenna arrays using such curved structures. Following this design process, two types of array structures evolved: pseudo-curved array (PCA), with the array apertures parallel to one another and the fully curved array (FCA), with the outer element apertures oriented radially outwards. These antenna arrays were designed, analysed and measured on five and seven element structures at a centre frequency of 18 GHz. Both PCA and FCA performance showed a broader frequency response as compared with the uniform array; additionally, it was determined that the variation in array geometry permits them to control the number of beams and nulls in the far-field pattern, as well as the beamwidth of the array. Overall, it was observed that curved arrays showed a narrowing of multibeam positions and conversely a broader frequency response as compared with uniform arrays.
机译:当天线元件配置为不均匀的几何形状时,曲面阵列天线可提供更大的自由度。这允许在控制图案结构上增加灵活性,并增加操作带宽。在这项研究中,作者提出了使用这种弯曲结构的宽带天线阵列的通用设计方法。按照这一设计过程,出现了两种类型的阵列结构:伪弯曲阵列(PCA),阵列孔彼此平行;完全弯曲阵列(FCA),外部元件孔径向向外。这些天线阵列是在中心频率为18 GHz的五个和七个元件结构上进行设计,分析和测量的。与均匀阵列相比,PCA和FCA的性能均显示出更宽的频率响应。另外,确定阵列几何形状的变化允许它们控制远场图案中的光束和零点的数量以及阵列的光束宽度。总的来说,观察到与均匀阵列相比,弯曲阵列显示出多光束位置变窄,而频率响应更宽。

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