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A Horn-fed Frequency Scanning Holographic Antenna Based on Generalized Law of Reflection

机译:基于广义反射定律的角馈频扫描全息天线

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摘要

A new method of designing horn-fed frequency scanning holographic antenna is proposed. The artificial surface design of holographic antenna is based on generalized law of reflection. The input admittance is utilized to construct the interference pattern of the surface which is intervened by the excitation wave and the required radiation wave. The scalar admittance unit cell which is composed of sub-wavelength metallic patch on grounded dielectric substrate is implemented to design artificial surface, and the simulation results are just as expected that the antenna can scan the beam as the frequency changes. Furthermore, a cross shaped patch printed on grounded dielectric unit cells is used to reduce the designing complexity of tensor admittance surface. At last, a frequency scanning holographic antenna with tensor admittance surface with ability of changing linear polarization excitation wave to left-hand circular polarization (LCP) radiation wave is designed and fabricated. The full-wave simulation and experimental results show well agreement and confirm the method proposed.
机译:提出了一种新型的角馈频扫描全息天线设计方法。全息天线的人造表面设计基于广义反射定律。输入的导纳用于构造表面的干涉图样,该干涉图样被激发波和所需的辐射波所干扰。在接地的电介质基板上实现了由亚波长金属贴片组成的标量导纳晶胞来设计人造表面,仿真结果与预期的一样,天线可以随着频率的变化而扫描波束。此外,使用印刷在接地的电介质单元电池上的十字形贴片来减少张量导纳表面的设计复杂性。最后,设计并制造了具有张量导纳面的频率扫描全息天线,该天线具有将线性极化激发波转换为左旋圆极化(LCP)辐射波的能力。全波仿真和实验结果吻合良好,证实了所提出的方法。

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