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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Compact dual-polarized filtering antenna with enhanced bandwidth for 5G sub-6 GHz applications
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Compact dual-polarized filtering antenna with enhanced bandwidth for 5G sub-6 GHz applications

机译:紧凑型双极化过滤天线,具有增强带宽的5G子6 GHz应用程序

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摘要

A broadband dual-polarized filtering antenna with a compact size and high skirt selectivity for fifth-generation (5G) sub-6 GHz applications is proposed in this paper. The antenna is composed of two feeding networks and four shorted patches, which is based on a slot-aperture excitation scheme. By employing the novel defected ground LC resonator structures (DGLCRSs) and two different types of open-ended structures, the proposed dual-polarized antenna realizes satisfactory filtering performance as well as an improved operating bandwidth simultaneously. During which, four radiation nulls are generated at the both band edges and can be individually controlled. To further enhance the upper stopband performance, four pairs of meander-shaped slots are inserted on the patches symmetrically, which introduces another controllable radiation null. The working mechanism for achieving the filtering responses is provided. A fabricated prototype and experimental results demonstrate that an impedance bandwidth of 42.9% (3.3–5.1 GHz) is first obtained in a low-profile dual-polarization structure, covering the entire 5G N77/N78/N79 bands. The measured gain is about 8.1 dBi within the passband, while the stopband suppression is better than 16 dB up to 1.85 fc. These merits make the proposed antenna quite potential for the 5G new radio communication systems.
机译:本文提出了一种具有紧凑尺寸和高裙部选择性的宽带双极化过滤天线,用于第五代(5G)SUB-6 GHz应用程序。天线由两个馈送网络和四个短路贴片组成,其基于槽孔励磁方案。通过采用新型缺陷的地面LC谐振器结构(DGLCRSS)和两种不同类型的开放式结构,所提出的双极化天线实现令人满意的过滤性能以及同时改进的操作带宽。在此期间,在两个带边缘产生四个辐射空,并且可以单独地控制。为了进一步提高上部停滞性能,对称地将四对曲面形槽插入贴片上,这引入了另一种可控辐射空。提供了实现滤波响应的工作机制。制造的原型和实验结果表明,首先在低型两极化结构中获得42.9%(3.3-5.1GHz)的阻抗带宽,覆盖整个5G N77 / N78 / N79带。在通带内测量的增益约为8.1dBI,而停滞抑制优于16 dB,高达1.85 Fc。这些优点使得建议的天线具有5G新型无线电通信系统的潜力。

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