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Ku-Band Dual Linear Polarized Parabolic-Cylindrical Reflector Antenna with Beam Steering Performance

机译:具有波束转向性能的Ku波段双线性极化抛物柱面反射镜天线

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A hybrid reflector-phased array antenna system for high data rate wireless network is proposed at Ku-band (12 - 15 GHz). The proposed hybrid antenna system uses an $8 imes 4$ dual linear-polarized stacked patch phased array antenna as the feed source to illuminate the 50 cm parabolic-cylindrical reflector of $f/D=0.4$. The parabolic-cylindrical reflector has the property of a wide-angle beam steering along the cylindrical axis as compared to a conventional parabolic reflector. The multilevel fast multipole method (MLFMM) is used along with the method of moments (MoM) in TICRA GRASP to analyze the finite thickness effect of the reflector. The peak directivity of the reflector pattern is around 26 dBi, and a beam scanning of ±30° is achieved along the cylindrical axis of the reflector for 3 dB reduction in the gain. Anokiwave AWMF-0117 integrated silicon core chips are used in the beamforming network for achieving beam steering. The parabolic-cylindrical reflector is 3D printed and metalized with copper using the vapor-deposition technique. The phased array antenna is assembled with the Anokiwave chips and is currently being integrated with the 3D printed parabolic-cylindrical reflector for experimental verification of the scan performance.
机译:在Ku频段(12-15 GHz)上提出了一种用于高数据速率无线网络的混合反射器相控阵天线系统。拟议的混合天线系统使用了 $ 8 \ times 4 $ 双线性极化堆叠贴片相控阵天线作为馈源,照亮50 cm的抛物柱面反射镜 $ f / D = 0.4 $ 。与传统的抛物面反射器相比,该抛物柱面反射器具有沿圆柱轴转向的广角光束的特性。 TICRA GRASP中使用了多级快速多极方法(MLFMM)和矩量方法(MoM)来分析反射器的有限厚度效应。反射器图案的峰值方向性约为26 dBi,并且沿着反射器的圆柱轴实现了±30°的光束扫描,从而使增益降低了3 dB。 Anokiwave AWMF-0117集成硅芯芯片用于波束形成网络中,以实现波束控制。抛物柱面反射镜通过气相沉积技术进行3D打印并用铜金属化。相控阵天线与Anokiwave芯片组装在一起,目前与3D打印的抛物柱面反射镜集成在一起,用于对扫描性能进行实验验证。

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