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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Radiation performance enhancement of an ultra wide band antenna using metamaterial band-pass filter
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Radiation performance enhancement of an ultra wide band antenna using metamaterial band-pass filter

机译:使用超材料带通滤波器的超宽带天线的辐射性能提高

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In this paper, a metamaterial structure based on Frequency Selective Surface (FSS) cell is proposed to achieve an isotropic band-pass filtering response. This filter consists of a planar layer formed by a 3×3 metamaterials cell array with transmittive filtering behavior at 3.5 GHz. This design with 45 mm × 45 mm dimension is then integrated in close proximity at distance of 10 mm with an Ultra Wide Band (UWB) antenna to enhance it’ s performances around a 3.5 GHz operating frequency. Simulation results ensure that filter geometry provides the advantage of polarization independency and also exhibits the angular stability up to 45? for both Transverse Electric (TE) and Transverse magnetic (TM) modes. More importantly, enhancement in antenna radiation pattern characteristics is illustrated when the planar FSS layer is integrated at a small distance from the radiator. Moreover, antenna gain was improved to 3.22 dBi, adaptation of antenna port (S11) was increased to -53.26 dB and antenna bandwidth reduction to 1.7 GHz is also detected. All these performances make the proposed design as a good choice used to shield signals in UWB wireless applications especially for connected object in 5G.
机译:在本文中,提出了基于频率选择表面(FSS)电池的超资料结构以实现各向同性带通滤波响应。该过滤器包括由3×3超材料单元阵列形成的平面层,其具有3.5GHz的透射滤波行为。然后,使用45mm×45mm尺寸的设计在10 mm的距离附近,具有超宽带(UWB)天线,以提高3.5 GHz工作频率的表现。仿真结果确保过滤几何形状提供极化独立性的优势,并且还具有高达45的角度稳定性?对于横向电气(TE)和横向磁性(TM)模式。更重要的是,当平面FSS层集成在距散热器的小距离时,示出了天线辐射图案特性的增强。此外,天线增益得到改善为3.22dBI,天线端口的适配(S11)增加到-53.26dB,并且还检测到天线带宽降低到1.7GHz。所有这些表演使得所提出的设计作为用于屏蔽UWB无线应用中的信号的良好选择,特别是在5G中的连接对象。

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