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One- and Two-Dimensional Beam-Switching Antenna for Millimeter-Wave MIMO Applications

机译:用于毫米波mImO应用的单维和二维光束切换天线

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摘要

One- (1-D) and two-dimensional (2-D) beamforming is presented for a planar dipole antenna operating at millimeterwave bands. 1-D beamforming was achieved by using mu (µ)-near-zero (MNZ) metamaterial slabs that were integrated in the dipole antenna, where each slab was loaded with an array of low refractive-index unit-cells. The resulting radiated beam can be scanned by 35◦ due to the phase shift in the beam introduced by its interaction with the metamaterial slabs. In addition, the proposed antenna configuration provides gain improvement of 8 dB as the slabs effectively increase the aperture size of the antenna. An array of MNZ inclusions in the E-plane of a double dipole antenna is shown to provide scanning from −35◦ to +35◦ with respect to the end-fire direction over 57–64 GHz. 2-D beam-scanning was realized by increasing the number of MNZ unit-cells in the elevation plane of double dipole antenna. Loading the slabs in front of\udthe double dipole antenna with 10 × 7 array of MNZ unit-cells is shown to provide a beam deflection of 35◦ in both the azimuth and elevation planes.
机译:提出了一种在毫米波波段工作的平面偶极天线的一维(1-D)和二维(2-D)波束成形。一维波束成形是通过使用集成在偶极天线中的mu(µ)-接近零(MNZ)超材料平板实现的,每个平板都装有低折射率单位晶格阵列。由于光束与超材料板相互作用而引入的光束相移,因此可以将辐射光束扫描35°。另外,由于平板有效地增加了天线的孔径尺寸,因此所提出的天线配置可将增益提高8 dB。图中显示了双偶极天线E平面中的MNZ夹杂物阵列,相对于57-64 GHz范围内的端射方向,扫描范围为-35°至+ 35°。通过增加双偶极天线仰角平面中的MNZ单位单元的数量,实现了二维波束扫描。如图所示,将双偶极天线前面的平板用10×7的MNZ单位单元阵列加载,可以在方位角和仰角平面内提供35º的波束偏转。

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