5G网络毫米波频率可重构天线

Farooq Azam, S. Bashir, M. Sohaib
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引用次数: 2

摘要

5G(第五代)是下一代数据网络,为智能手机和其他设备提供比以往更快的速度和可靠的连接。这些网络仍在开发中,预计将在28 GHz和38 GHz频段上运行。然而,这些5G设备所需的多个天线将增加整个系统的尺寸。可以在多个频段切换的单天线解决了这一问题。提出了一种用于5G通信网络的新型频率可重构天线。天线设计在罗杰R5880衬底上,其介电常数为2.2,损耗正切为0.0009。该天线由简单的顶层辐射器和两个接地面槽组成。频率可重构性是通过在每个地槽中放置三个PIN二极管来实现的。天线的工作频段由PIN二极管的开关状态控制。通过简单地开关二极管,所提出的天线覆盖25.6-39.3 GHz的宽带。因此,它可以覆盖28 GHz和38 GHz频段,这两个频段预计将成为5G通信的两个工作频段。天线的整体尺寸为10x7mm2。除了体积小之外,该天线还具有6.5-8.4 dB的良好增益范围以及两个5G频段中85%的效率。所有的模拟都是在CST(计算机模拟技术)工作室套件中完成的。这种可重构天线可以在未来的5G通信网络中找到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Millimeter Waves Frequency Reconfigurable Antenna for 5G Networks
5G (Fifth Generation) is the next generation of data network, offering faster speeds and reliable connections on smart phones and other devices than ever before. These networks are still under development and expected to operate on 28 and 38 GHz bands. However, multiple antennas required for these 5G devices will increase the overall system size. Single antenna which can switch to operate on multiple bands is the solution to this problem. A novel frequency reconfigurable antenna for 5G communication networks is presented in this paper. The antenna was designed on a Roger R5880 substrate having dielectric constant 2.2 and loss tangent 0.0009. The proposed antenna consists of simple radiator on top layer and two slots in the ground layer. The frequency re-configurability is achieved by placing three PIN diodes in each slot of the ground. The operating frequency band of antenna is controlled by switching states of PIN diodes. The proposed antenna covers a wide band from 25.6-39.3 GHz by simply switching the diodes ON/OFF. Thus it can cover 28 and 38 GHz bands that are anticipated to be the two working bands for 5G communication. The overall size of the antenna is 10x7 mm2. In addition to being small this antenna has a good gain ranging from 6.5-8.4 dB as well as 85% efficiency in the two 5G bands. All simulations have been done in CST (Computer Simulation Technology) Studio Suite. This reconfigurable antenna can find applications in future 5G communication networks.
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