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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >Hybrid Metamaterial for the Secondary Radar Antenna System
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Hybrid Metamaterial for the Secondary Radar Antenna System

机译:二次雷达天线系统的混合超材料

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This paper proposes the gain enhancement of dual-band and dual-polarized asymmetric horn antenna for the secondary radar system using hybrid metamaterial techniques. The hybrid metamaterial is comprised of the structures of woodpile electromagnetic bandgap (EBG) for gain enhancement of the primary main beam of the radar system at the operating frequency of 1,300 MHz with horizontal polarization; and the wire medium structure that is placed beside the EBG structure for gain improvement of the identification friend or foe (IFF) main beam, which is operated at the center frequency of 1,060 MHz with vertical polarization. Meanwhile, the cooperated structures have to function to control the directions of the primary and IFF main beams retaining at 0° and 6°, respectively, too. When the hybrid metamaterial structure is placed at the front of an asymmetric horn’s aperture, with suitable parameters and optimized spacing, it is found to increase the gains of the two beams compared to the single asymmetric horn around 3 dB and retain the directions of original main beams. The comparison of the results between simulation and measurement, such as the reflected power (S11), gain, and radiation patterns, are in good agreement.
机译:本文提出了使用混合超材料技术的二次雷达系统双频带和双极化不对称喇叭天线的增强。混合超材料包括木层电磁带隙(EBG)的结构,用于增强雷达系统的主要主束,在1,300 MHz的运行频率下,具有水平极化;并且置于EBG结构旁边的线材介质结构,用于增益改善识别朋友或敌人(IFF)主梁,其在1,060MHz的中心频率下以垂直极化在1,060MHz的中心频率下操作。同时,配合结构必须分别用于控制在0°和6°处保持在0°和6°的主要和IFF主光束的方向。当混合超材料结构放置在不对称的喇叭孔的前部时,具有合适的参数和优化的间距,发现与3 dB约为3 dB的单个不对称喇叭相比,增加了两个光束的增益,并保留了原始主的方向梁。模拟和测量的结果的比较,例如反射功率(S11),增益和辐射模式,非常一致。

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