Compact ACS-fed MIMO antenna with dual-band notch characteristics for UWB applications

IF 1.4 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Zhongyuan Lu, Han Lin, Zhonggen Wang, Wenyan Nie, Weidong Mu
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引用次数: 0

Abstract

An ultra-wideband (UWB) and compact-size four-port multiple input multiple output (MIMO) antenna with a footprint of 34 mm × 34 mm fed by an asymmetric coplanar strip (ACS) is investigated. The proposed antenna is composed of four orthogonally placed identical modified elliptical-shaped radiators and achieves an impedance bandwidth of 3.4–12.2 GHz. By etching two inverted L-shaped slots in the radiator element, WLAN band and X-band are rejected in the operating communication range. Because of the usage of a meander line decoupler, the isolation enhancement at the 8–12 GHz band is achieved and the isolation is more than 18 dB for most of the UWB range. The performance of the proposed antenna is studied in terms of isolation between each port, radiation pattern, current distribution, gain, envelope correlation coefficient, diversity gain, and total active reflection coefficient. The compact size and reduced complexity make the proposed design highly suitable for portable devices.
紧凑型acs馈电MIMO天线,双频陷波特性,用于超宽带应用
研究了一种采用非对称共面带馈电的超宽带(UWB)紧凑型四端口多输入多输出(MIMO)天线,其尺寸为34 mm × 34 mm。该天线由4个正交放置的相同改进型椭圆形辐射体组成,阻抗带宽为3.4-12.2 GHz。通过在辐射元件上蚀刻两个倒l型槽,在工作通信范围内将WLAN频段和x频段拒之在外。由于使用了曲线解耦器,实现了8-12 GHz频段的隔离增强,并且在大多数UWB范围内隔离度大于18 dB。从各端口之间的隔离、辐射方向图、电流分布、增益、包络相关系数、分集增益和总主动反射系数等方面研究了该天线的性能。紧凑的尺寸和降低的复杂性使所提出的设计非常适合便携式设备。
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来源期刊
International Journal of Microwave and Wireless Technologies
International Journal of Microwave and Wireless Technologies ENGINEERING, ELECTRICAL & ELECTRONIC-TELECOMMUNICATIONS
CiteScore
3.50
自引率
7.10%
发文量
130
审稿时长
6-12 weeks
期刊介绍: The prime objective of the International Journal of Microwave and Wireless Technologies is to enhance the communication between microwave engineers throughout the world. It is therefore interdisciplinary and application oriented, providing a platform for the microwave industry. Coverage includes: applied electromagnetic field theory (antennas, transmission lines and waveguides), components (passive structures and semiconductor device technologies), analogue and mixed-signal circuits, systems, optical-microwave interactions, electromagnetic compatibility, industrial applications, biological effects and medical applications.
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