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首页> 外文期刊>International journal of communication systems >Radiation performance improvement of wideband microstrip antenna array using wideband AMC structure
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Radiation performance improvement of wideband microstrip antenna array using wideband AMC structure

机译:宽带AMC结构的宽带微带天线阵列的辐射性能改进

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摘要

In this paper, the radiation performance of an antenna array is improved by designing a new wideband artificial magnetic conductor (AMC). The proposed AMC surface operates at the frequency of 3 GHz with +/- 90 degrees reflection phase bandwidth of 22%. In order to identify the key design parameters of the AMC structure, a parametric study is performed. To improve the radiation performance of the antenna array, an AMC reflector is developed through utilizing an array of 2 x 8 periodic patches of AMC unit cells. By this technique, the front to back ratio of the designed antenna array is enhanced about 16.27 dB. It is concluded that tuning of the AMC dimensions for controlling the reflection coefficient at each port of antenna array during beam steering is necessary. Because of the using of the AMC surfaces as a reflector instead of conventional PEC surfaces, size reduction of the antenna array in the order of 20% is achieved. In this study, a circuit model for single element of the antenna array with considering AMC loading effect is introduced, which predicts the bandwidth behaviour of the proposed antenna. The final designed antenna array exhibits low level of cross polarization making it well-suited for tracking radars and electronic warfare applications. The proposed antenna with the AMC reflector is fabricated and measured. The measured -10 dB impedance bandwidth and peak gain of the proposed antenna is 20% (2.7-3.25 GHz) and 13.4 dBi, respectively, which are compatible with the simulation results.
机译:在本文中,通过设计新的宽带人工磁导体(AMC)来改善天线阵列的辐射性能。所提出的AMC表面以3 GHz的频率运行,+/- 90度反射相位带宽为22%。为了识别AMC结构的关键设计参数,执行参数研究。为了提高天线阵列的辐射性能,通过利用2×8周期性的AMC单元电池的阵列来开发AMC反射器。通过这种技术,设计的天线阵列的前后比率增强了约16.27dB。得出结论,需要调整用于控制光束转向期间天线阵列的每个端口处的反射系数的AMC尺寸是必要的。由于AMC表面作为反射器而不是传统的PEC表面,因此实现了20%的天线阵列的尺寸减小。在该研究中,引入了考虑AMC加载效果的天线阵列的单个元件的电路模型,其预测所提出的天线的带宽行为。最终设计的天线阵列表现出低级别的交叉极化,使其非常适合跟踪雷达和电子战应用。制造和测量具有AMC反射器的所提出的天线。所测量的-10dB阻抗带宽和所提出的天线的峰值增益分别为20%(2.7-3.25GHz)和13.4dBI,其与模拟结果兼容。

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