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Enhancing the Aperture Usage Efficiency of Single Reflector Compact Antenna Test Range Using 10 × 10 Antenna Array

机译:使用10×10天线阵列提高单反射器紧凑型天线测试范围的光圈使用效率

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Aperture usage efficiency is an important parameter for designing a compact antenna test range (CATR). The edge treatment of single reflector edge can reduce the effect of edge diffraction, but the aperture utilization only increases to 50%. The method that beamforming the radiation pattern of the feed is used in this paper. That will change the distribution in the aperture of the reflector surface to improve the aperture utilization. A 10×10 uniform rectangular antenna array is designed as feed and each element has different excitation. Adjusting the element excitation of antenna array can realize beamforming which can achieve high aperture usage. The method to realize beamforming is the Particle Swarm Optimization (PSO) algorithm. The simulation is verified in a single parabolic reflector CATR with a diameter of 1 m and focal length of 1.633 m. Without the edge treatment, the aperture utilization can reach 80%, under the amplitude ripple standard of 2 dB. Above all, the works of this paper provides theoretical guidance for designing antenna array as a feed in the single parabolic reflector CATR with high aperture usage efficiency.
机译:孔径使用效率是设计紧凑型天线测试范围(CATR)的重要参数。对单个反射器边缘进行边缘处理可以减少边缘衍射的影响,但孔径利用率仅提高到50%。本文采用波束形成馈源辐射方向图的方法。这将改变反射器表面的孔中的分布以提高孔利用率。设计了一个10×10均匀矩形天线阵列作为馈电,每个元件具有不同的激励。调节天线阵列的元件激励可以实现波束形成,可以实现高孔径利用率。实现波束成形的方法是粒子群优化(PSO)算法。在直径为1 m,焦距为1.633 m的单个抛物面反射器CATR中验证了该仿真。在不进行边缘处理的情况下,在2 dB的幅度纹波标准下,孔径利用率可以达到80%。最重要的是,本文的工作为将天线阵列设计为具有高孔径利用率的单抛物面反射器CATR中的馈电提供了理论指导。

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