论文标题

增强的有效孔径分布函数以表征大型天线阵列

Enhanced Effective Aperture Distribution Function for Characterizing Large-Scale Antenna Arrays

论文作者

Cai, Xuesong, Zhu, Meifang, Fedorov, Aleksei, Tufvesson, Fredrik

论文摘要

大规模天线阵列的准确表征对第五代(5G)和超越系统的重要性和复杂性增长,因为它们具有更多的天线元件,并且需要提高整体性能。阵列中所有天线元件的完整3D模式需要进行表征,因为由于结构不准确,耦合,天线阵列的不对称性等,它们的一般不同。但是,随着阵列孔的增加,由于阵列元件的较大距离偏移距离引用点,因此需要更密集的空间样品,从而导致过度的测量时间和EADF的复杂性增加。在本文中,我们介绍了应用于大型阵列的EADF,并突出了由大型阵列孔引起的问题。为了克服问题,提出了增强的EADF,其复杂性较低,该复杂性本质地由每个数组元件的特征而不是阵列光圈确定。增强的EADF使用以相对较大的平面阵列进行的27-30 GHz频带进行的实验测量验证。

Accurate characterization of large-scale antenna arrays is growing in importance and complexity for the fifth-generation (5G) and beyond systems, as they feature more antenna elements and require increased overall performance. The full 3D patterns of all antenna elements in the array need to be characterized because they are in general different due to construction inaccuracy, coupling, antenna array's asymmetry, etc. The effective aperture distribution function (EADF) can provide an analytic description of an antenna array based on a full-sphere measurement of the array in an anechoic chamber. However, as the array aperture increases, denser spatial samples are needed for EADF due to large distance offsets of array elements from the reference point in the anechoic chamber, leading to a prohibitive measurement time and increased complexity of EADF. In this paper, we present the EADF applied to large-scale arrays and highlight issues caused by the large array aperture. To overcome the issues, an enhanced EADF is proposed with a low complexity that is intrinsically determined by the characteristic of each array element rather than the array aperture. The enhanced EADF is validated using experimental measurements conducted at 27-30 GHz frequency band with a relatively large planar array.

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