Abbas Anees, Hussain Niamat, Sufian Md Abu, Jung Jinkyu, Park Sang Myeong, Kim Nam
Department of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, Korea.
Sensors (Basel). 2022 Feb 14;22(4):1460. doi: 10.3390/s22041460.
This paper presents the performance improvement of a co-planar waveguide rectangularly notched UWB-MIMO antenna. The isolation and gain of the antenna are enhanced by using a parasitic isolator. The antenna consists of four microstrip patch antennas and an isolator. The UWB characteristic of the antenna is achieved by truncating the lower ends of the radiating patch by a semicircle. The rectangular notch characteristic is obtained by adding two electromagnetic bandgap structures on the backside of the antenna, which is attached to the radiator via shorting pin. The performance, especially the decoupling of the MIMO antenna is improved by using a novel parasitic decoupler, which is placed between the antennas to receive uncorrelated signals. The decoupling structure consists of a square shape metallic element with a circular slot inside and a half-semicircle slot edged at each corner. Four rectangular metallic stubs are extended from opposite parallel sides to improve further isolation. The simulated and measured results show that the antenna has a rectangular notch band (5.25-5.85 GHz) across the working band of 3-12.8 GHz. In addition, the antenna has a planar structure with an overall size of 60 × 60 × 1.52 mm and offers stable gain, reduced mutual coupling (<-21 dB), and lower envelop correlation (<0.001).
本文介绍了一种共面波导矩形开槽超宽带多输入多输出(UWB-MIMO)天线的性能改进。通过使用寄生隔离器提高了天线的隔离度和增益。该天线由四个微带贴片天线和一个隔离器组成。天线的超宽带特性通过将辐射贴片的下端截去一个半圆来实现。矩形开槽特性是通过在天线背面添加两个电磁带隙结构获得的,该结构通过短路引脚连接到辐射器。通过使用一种新型寄生去耦器提高了性能,特别是MIMO天线的去耦性能,该去耦器放置在天线之间以接收不相关信号。去耦结构由一个内部有圆形槽且每个角有半圆形边缘槽的方形金属元件组成。从相对的平行边延伸出四个矩形金属短截线以进一步提高隔离度。仿真和测量结果表明,该天线在3-12.8 GHz的工作频段内有一个矩形开槽频段(5.25-5.85 GHz)。此外,该天线具有平面结构,整体尺寸为60×60×1.52 mm,具有稳定的增益、降低的互耦(<-21 dB)和较低的包络相关性(<0.001)。