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Low RCS and Broadband ME Dipole Antenna Loading Artificial Magnetic Conductor Structures

机译:低RCS和宽带ME偶极子天线加载人造电磁导体结构

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摘要

A design for low radar cross section (RCS) and broadband magnetic-electric (ME) dipole antenna is proposed. Minkowski-like fractal metal patches printed on the substrate form the electric dipoles, four metallic vias connected to the radiation patches and the metal ground form the magnetic dipoles. The whole antenna is connected with an L-shaped feeding structure which excites electric and magnetic dipoles simultaneously. Meanwhile, two different structure AMC cells with a 180° (±30°) phase difference in a broadband frequency region are designed as a chessboard and loaded around the ME antenna radiation patch. Numerical and experimental results incident the antenna bandwidth is 42.4% from 8.0GHz to 12.3GHz, covering the whole X band. Moreover, the RCS is reduced remarkable in a broad frequency range from 6.5GHz to 15.5GHz (81.8% relative bandwidth) when compared to conventional ME antenna. After loading AMC structures, the antenna still keeps advanced performances such as stable gain and almost consistent pattern in E and H plane.
机译:提出了一种低雷达截面(RCS)和宽带电磁(ME)偶极子天线的设计方案。印在基板上的类似Minkowski的分形金属贴片形成电偶极子,连接到辐射贴片的四个金属通孔和金属接地形成磁偶极子。整个天线与L形馈电结构相连,该结构同时激发电和磁偶极子。同时,将两个在宽带频率范围内具有180°(±30°)相位差的不同结构的AMC电池设计为棋盘,并加载到ME天线辐射贴片周围。从8.0GHz到12.3GHz入射天线带宽的数值和实验结果为42.4%,覆盖了整个X频段。此外,与传统的ME天线相比,RCS在6.5GHz至15.5GHz的较宽频率范围(相对带宽为81.8%)中显着降低。加载AMC结构后,天线仍保持先进的性能,例如稳定的增益以及E和H平面中几乎一致的方向图。

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