Kampouridou Despoina, Feresidis Alexandros
Department of Electronic, Electrical and Systems Engineering, University of Birmingham, Birmingham, B15 2TT, UK.
Sci Rep. 2021 Jul 20;11(1):14754. doi: 10.1038/s41598-021-94232-2.
Periodically corrugated metallic antennas have been developed in recent years from microwave to THz frequencies, due to their advantages of highly directive radiation patterns, low profile and ease of fabrication. However, the limited gain bandwidth of such antennas remains one of their inherent disadvantages. In terms of design, the majority of the existing implementations in literature utilize the standard rectangular shaped corrugated unit cell. In this paper, we propose novel complex shaped corrugated unit cells that produce a broadband performance when assembled in a periodic configuration. Two broadband prototypes are presented at the Ku frequency band that are formed of hybrid shaped corrugations. The first prototype of six periodic rings achieves, for the first time, a flat gain simulated response with a maximum value of 15.7 dBi, 1-dB gain bandwidth of 16.4%, and an extended 3-dB gain bandwidth of 19.64%. The second novel prototype of five rings achieves an enhanced 3-dB gain bandwidth of 15.2% and maximum gain of 18.1 dBi.
近年来,由于周期性波纹金属天线具有高指向性辐射方向图、低剖面和易于制造等优点,已从微波频段发展到太赫兹频段。然而,此类天线有限的增益带宽仍然是其固有的缺点之一。在设计方面,文献中大多数现有的实现方式采用标准的矩形波纹单元。在本文中,我们提出了新型的复杂形状波纹单元,当以周期性配置组装时可产生宽带性能。在Ku频段展示了两个由混合形状波纹构成的宽带原型。第一个由六个周期环组成的原型首次实现了平坦的模拟增益响应,最大值为15.7 dBi,1 dB增益带宽为16.4%,扩展的3 dB增益带宽为19.64%。第二个由五个环组成的新型原型实现了增强的3 dB增益带宽,为15.2%,最大增益为18.1 dBi。