Abbas Anees, Hussain Niamat, Jeong Min-Joo, Park Jiwoong, Shin Kook Sun, Kim Taejoon, Kim Nam
Departement of Computer and Communication Engineering, Chungbuk National University, Cheongju 28644, Korea.
Sensors (Basel). 2020 Jan 31;20(3):777. doi: 10.3390/s20030777.
This paper presents the design and realization of a compact ultra-wideband (UWB) antenna with a rectangular notch wireless area network (WLAN) band that has controllable notched bandwidth and center frequency. The UWB characteristics of the antenna are achieved by truncating the lower ends of the rectangular microstrip patch, and the notch characteristics are obtained by using electromagnetic bandgap (EBG) structures. EBGs consist of two rectangular metallic conductors loaded on the back of the radiator, which is connected to the patch by shorting pins. A rectangular notch at the WLAN band with high selectivity is realized by tuning the individual resonant frequencies of the EBGs and merging them. Furthermore, the results show that the bandwidth and frequency of the rectangular notch band could be controlled according to the on-demand rejection band applications. In the demonstration, the rectangular notch band was shifted to X-band satellite communication by tuning the EBG parameters. The simulated and measured results show that the proposed antenna has an operational bandwidth from 3.1-12.5 GHz for |S| < -10 with a rectangular notch band from 5-6 GHz, thus rejecting WLAN band signals. The antenna also has additional advantages: the overall size of the compact antenna is 16 × 25 × 1.52 mm and it has stable gain and radiation patterns.
本文介绍了一种具有矩形陷波的紧凑型超宽带(UWB)天线的设计与实现,该天线工作于无线局域网(WLAN)频段,具有可控的陷波带宽和中心频率。天线的超宽带特性通过截断矩形微带贴片的下端来实现,而陷波特性则通过使用电磁带隙(EBG)结构来获得。EBG由加载在辐射器背面的两个矩形金属导体组成,辐射器通过短路引脚与贴片相连。通过调整EBG的各个谐振频率并使其合并,在WLAN频段实现了具有高选择性的矩形陷波。此外,结果表明,矩形陷波频段的带宽和频率可根据按需抑制频段应用进行控制。在演示中,通过调整EBG参数,将矩形陷波频段移至X波段卫星通信频段。仿真和测量结果表明,所提出的天线在|S| < -10时具有3.1 - 12.5 GHz的工作带宽,矩形陷波频段为5 - 6 GHz,从而抑制了WLAN频段信号。该天线还具有其他优点:紧凑型天线的整体尺寸为16×25×1.52 mm,并且具有稳定的增益和辐射方向图。