面向未来5G的28 GHz矩形微带贴片阵列天线设计与分析

Ashraf Aboshosha, M. El-Mashade, Ehab A. Hegazy
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引用次数: 0

摘要

高频天线的窄波束宽度导致了采用先进的多输入多输出(MIMO)和自适应波束形成技术的研究。这些天线技术克服了毫米波的一些具有挑战性的传播特性,可以提高频谱效率,提供更高的数据速率,并为移动宽带服务提供足够的合理覆盖。随着更高的10+GHz频率和毫米波部署的潜力,大多数5G候选频段在20至50 GHz。5G的频段被提出并演示在24GHz以上,如28GHz到38GHz。在本章中,作者提出了一种用于未来第五代(5G)手机应用的28GHz 4元微带贴片阵列天线的设计。设计的天线可以使用低成本的FR-4基板实现,同时在增益和效率方面保持良好的性能。仿真结果表明,在22 ~ 34 GHz频率范围内,天线的S11响应小于-10 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of Rectangular Microstrip Patch Array Antenna on 28 GHz Band for Future of 5G
The narrow beam widths generally associated with antennas at higher frequencies has led to the study of using advanced multiple-input multiple-output (MIMO) and adaptive beam-forming. These antenna technologies are overcoming some of the challenging propagation characteristics of mm waves and could increase the spectrum efficiency, provide higher data rates, and adequate reasonable coverage for mobile broadband services. With the potential for higher 10+GHz frequencies as well as mm waves deployment, most 5G candidates bands in 20 to 50 GHz. The frequency band of 5G is proposed and demonstrated above 24GHz such as 28GHz to 38GHz. In this chapter, the authors present a design of 28GHz for 4 Elements microstrip patch array antenna for future fifth generation (5G) mobile-phone applications. The designed antenna can be implemented using low cost FR-4 substrates, while maintaining good performance in terms of gain and efficiency. In addition, the simulated results show that the antenna has the S11 response less than -10 dB in the frequency range of 22 to 34 GHz.
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