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A Dual-Band Metasurface Antenna Using Characteristic Mode Analysis

机译:使用特征模式分析的双频超表面天线

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A compact metasurface-based antenna is proposed for dual-band operations. The proposed metasurface is designed on a single-layered substrate including an array of modified 3 × 3 squared patches. Each of the four corner patches is split into four fractional patches while the four edge patches are evolved into Malta crosses and the center patch is scaled. A substrate integrated waveguide-based Y-junction cavity-fed dual slot drives the metasurface with multiple impedance resonances. Based on the predicted modal behaviors of metasurface using a characteristic mode analysis (CMA), as an example, an antenna operating at three resonant modes at 28, 33, and 36 GHz, respectively is designed for the dual-band operation for the coming 5G. The proposed design shows that the measured impedance bandwidths (return loss larger than 10 dB) are 23.7-29.2 GHz and 36.7-41.1 GHz with the achieved gain of 4.8-7.2 dBi and 8.9-10.9 dBi, respectively. The proposed dual-band antenna features the advantages of low profile and wideband, suitable for the coming dual-band 5G applications.
机译:提出了一种紧凑的基于超表面的天线用于双频操作。拟议的超颖表面设计在单层基板上,该基板包括一系列经过修饰的3×3方形贴片。四个角点补丁中的每一个都被分割成四个分数补丁,而四个边缘补丁被演变成马耳他十字形,并且中心补丁被缩放。基片集成的基于波导的Y结腔馈电双槽驱动具有多个阻抗谐振的超表面。例如,基于使用特征模式分析(CMA)预测的超颖表面的模态行为,将天线设计为分别在28、33和36 GHz的三种谐振模式下工作,以用于即将到来的5G的双频操作。提议的设计表明,测得的阻抗带宽(回波损耗大于10 dB)为23.7-29.2 GHz和36.7-41.1 GHz,分别实现了4.8-7.2 dBi和8.9-10.9 dBi的增益。拟议中的双频天线具有低轮廓和宽带的优点,适用于即将到来的双频5G应用。

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