用于5G通信的紧凑型基板集成波导反射/发射阵列

S. Zainud-Deen, N. A. El-Shalaby, S. M. Gaber
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引用次数: 0

摘要

本文介绍了一种基于衬底集成波导技术(SIW)的紧凑尺寸穿孔反射/发射阵列的设计,用于5G通信28ghz。该天线具有体积小、制作方便、增益高、体积小等优点。单元元件由带有四个钻孔的介电块和两侧的金属引脚阵列组成。与传统电池相比,SIW金属引脚将单电池元件的总尺寸减小了40%。主瓣下的旁瓣电平为19.7 dB,峰值增益为23.7 dBi。为了克服由于馈电喇叭与反射光束在同一方向存在而导致的反射工作中的阻挡效应,设计了SIW发射阵列。它由13×13单元单元组成,每个单元单元的两侧都有金属引脚。实现了24.22 dBi的高增益,I-dB增益带宽为15.18%。利用有限积分技术对射孔SIW反射阵列进行了分析。
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Compact Substrate Integrated Waveguide Reflectarray/Transmitarray for 5G Communications
This paper introduces a design of compact size perforated reflectarray/transmitarray based on the substrate integrated waveguide technology (SIW) for 5G communications at 28 GHz. The proposed SIW reflectarray antenna has advantages in compact size, easy fabrication and high gain and reduces the size of the antenna. The unit-cell element consists of the dielectric block with four drilled holes and array of metallic pins on both sides. The SIW metallic pins reduce the total dimensions of the unit-cell element by 40% compared to that of the conventional cell. A peak gain of 23.7 dBi is achieved by side lobe level of 19.7 dB beneath the primary lobe. To overcome the blocking effect in the reflectarray operation due to the presence of the feeding horn in the same direction with the reflected beam, the SIW trasmitarray is designed. It consists of 13×13 unit-cell elements with the metallic pins arranged on the two sides of each unit-cell element. A high gain of 24.22 dBi, with I-dB gain bandwidth of 15.18% is achieved. The finite integration technique is used to analyze the perforated SIW reflectarray Itransmitarray.
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