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A New Method for Achieving Miniaturization and Gain Enhancement of Vivaldi Antenna Array Based on Anisotropic Metasurface

机译:基于各向异性超表面的实现维瓦尔第天线阵列小型化和增益增强的新方法

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摘要

A low-profile printed planar antipodal Vivaldi antenna (AVA) array with good performance for future fifth-generation (5G) millimeter-wave (mmWave) communication applications is presented. The proposed structure is an 8 x 1 array with eight elements in E-plane, which is fed by a 1-to-8 power divider network. A novel feature called anisotropic metasurface (MS) is located at the aperture, resulting in low cutoff frequency reduced from 24.55 to 24.1 GHz for miniaturization. In addition, the phase distribution located at the aperture of AVA array can be corrected by adding MS. Thus, the gain of AVA array can be improved from 8.5-11.2 to 9.35-12 dB in the frequency band of 5G mmWave communication. Finally, to verify the designed methods, the proposed AVA with MS (AVA-MS) array was successfully fabricated and measured, which occupies an area of 6.11 lambda(g) x2.93 lambda(g) x0.08 lambda(g). The numerical and experimental results coincide well with each other, which certify the new method for achieving miniaturization and gain enhancement of our proposed AVA-MS array.
机译:提出了一种薄型印刷平面对映维瓦尔第天线(AVA)阵列,该阵列具有良好的性能,可用于未来的第五代(5G)毫米波(mmWave)通信应用。所提出的结构是在E平面上具有八个元素的8 x 1阵列,由1到8功率分配器网络馈电。孔径处有一个称为各向异性超表面(MS)的新颖功能,可将低截止频率从24.55降低至24.1 GHz,以实现小型化。另外,可以通过添加MS来校正位于AVA阵列的孔径处的相位分布。因此,在5G毫米波通信的频带中,AVA阵列的增益可以从8.5-11.2dB提高到9.35-12dB。最后,为验证设计方法,成功制造并测量了所提出的带质谱的AVA(AVA-MS)阵列,其面积为6.11 lambda(g)x2.93 lambda(g)x0.08 lambda(g)。数值和实验结果相互吻合,证明了我们提出的AVA-MS阵列实现小型化和增益增强的新方法。

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