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Sub-THz Antenna for High-Speed Wireless Communication Systems

机译:用于高速无线通信系统的子THZ天线

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Terahertz (THz) links will play a major role in high data rate communication over a distance of few meters. In order to achieve this task, antenna designs with high gain and wideband characteristics will spearhead these links. In this contribution, we present different antenna designs that offer characteristics better suited to THz communication over short distances. Firstly, a single-element antenna having a dipole and reflector is designed to operate at 300?GHz, which is considered as a sub-terahertz band. That antenna achieves a wide impedance bandwidth of 38.6% from 294?GHz to 410?GHz with a gain of 5.14?dBi. Secondly, two designs based on the same dipole structure but with added directors are introduced to increase the gain while maintaining almost the same bandwidth. The gains achieved are 8.01?dBi and 9.6?dBi, respectively. Finally, an array of 1×4 elements is used to achieve the highest possible gain of 13.6?dBi with good efficiency about 89% and with limited director elements for a planar compact structure to state-of-the-art literature. All the results achieved make the proposed designs viable candidates for high-speed and short-distance wireless communication systems.
机译:Terahertz(Thz)链接将在几米距离的高数据速率通信中发挥重要作用。为了实现这项任务,具有高增益和宽带特性的天线设计将使这些链路刺激。在这一贡献中,我们提供了不同的天线设计,提供了更适合于短距离通信的特性。首先,设计具有偶极和反射器的单个元件天线被设计成在300ΩGHz中操作,该GHz被认为是子太赫兹带。该天线从294〜410到410达到38.6%的宽阻抗带宽,增益为5.14?dbi。其次,引入了基于同一偶极结构但具有添加导演的两个设计,以增加增益,同时保持几乎相同的带宽。所取得的增长分别为8.01?dbi和9.6?dbi。最后,使用1×4个元素的数组来实现最高可能的增益13.6?DBI,效率良好,效率约为89%,并具有有限的导演元素,用于全面紧凑的文献。实现的所有结果都使提议为高速和短距离无线通信系统设计可行的候选人。

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