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Effects of inter element spacing on large antenna array characteristics

机译:元件间距对大天线阵列特性的影响

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Large-scale antenna arrays have been the current interest in the study of massive MIMO as a promising technology for 5G. Planar arrays have become the suitable antenna array configurations for massive MIMO since they provide directive beams. In this paper, planar array is proposed with square and rectangular arrangements based on 2 × 2 antenna elements as one subarray. Then, array factor (AF) for the planar array based on the subarray with up to 64 antenna elements is calculated to analyze the effects of inter element spacing on large antenna array characteristics. It is observed that large number of antenna elements contribute to large number of side lobes in the AF pattern and higher directivity at the expense of narrower HPBW. Inter element spacing less than 0.51 produces lower directivity and higher HPBW. Therefore, inter element spacing equal or larger than 0.51 is suitable to achieve higher directivity for large antenna array applications.
机译:大规模天线阵列作为5G的一项有前途的技术已成为当前研究大规模MIMO的兴趣所在。平面阵列已经成为大规模MIMO的合适天线阵列配置,因为它们提供定向波束。在本文中,提出了一种基于正方形和矩形排列的平面阵列,其基于2×2天线元件作为一个子阵列。然后,计算基于具有多达64个天线单元的子阵列的平面阵列的阵列因子(AF),以分析单元间间距对大型天线阵列特性的影响。可以观察到,大量天线元件会导致AF模式中的旁瓣数量增加以及指向性更高,但代价是HPBW会变窄。单元间间距小于0.51会产生较低的方向性和较高的HPBW。因此,等于或大于0.51的元件间间距适合于在大型天线阵列应用中实现更高的方向性。

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