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RCS Reduction of 2×2 Microstrip Antenna Array Using All Dielectric Metasurface

机译:使用所有电介质元表面rcs减少2×2微带天线阵列

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This paper proposes a method to reduce the radar cross section (RCS) of a 2×2 microstrip antenna array around 20 GHz. The presented design is based on reflection phase cancellation principle and uses an all dielectric unit cell. Two perforated unit cells with 0° and 180° reflection phases are used and their geometrical parameters are optimized carefully to have 180° ± 30° reflection phase difference between their reflection phases, which is required to realize the phase cancellation. A 2×2 microstrip array is designed at 20 GHz and the proposed unit cell is distributed around the antennas in Chessboard like surface. A clear monostatic RCS reduction is achieved from about 18 GHz to 27 GHz with low level backscattered EM wave in the half space in front of the antenna array under both normal and oblique incidence of far-field plane wave. In the presented technique, no metallic inclusions are used on the upper surface of the dielectric substrate next to the antenna array radiating elements. Compared to the previously published works which used metallic inclusions next to radiating elements, the presented design has less effect on the radiation characteristics of the antenna array.
机译:本文提出了一种减少20 GHz约20GHz的2×2微带天线阵列的雷达横截面(RCS)的方法。所提出的设计基于反射相位取消原理,并使用所有介电单元电池。使用具有0°和180°反射相的两个穿孔单元细胞,并且它们在其反射阶段之间仔细优化其几何参数以在其反射阶段之间具有180°±30°的反射相位差,这是实现相位消除所需的。设计为2×2微带阵列,设计为20GHz,所提出的单元电池在棋盘上的天线周围分布。在天线阵列前面的半空间中的半空间中,在大约18GHz到27GHz中,在远场平面波的正常和倾斜发射中,从大约18GHz到27GHz实现明确的单体RCS减少。在呈现的技术中,在天线阵列辐射元件的介电基板的上表面上没有使用金属夹杂物。与先前公布的作品相比,使用辐射元件旁边的金属夹杂物,所示的设计对天线阵列的辐射特性较小。

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