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首页> 外文期刊>Journal of Computational Electronics >Near-field phase modulation using a semicircular radially gradient metasurface for beam steering of an RF antenna
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Near-field phase modulation using a semicircular radially gradient metasurface for beam steering of an RF antenna

机译:用于射频天线的光束转向的半圆形径向梯度元表面近场相位调制

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摘要

A semicircular radially gradient metasurface (SCRGM) structure is proposed to modulate the phase of the electric field of a radiofrequency (RF) antenna in the near field. The metasurface partially covers the antenna aperture, thus facilitating tilting of the beam in the elevation plane (E-plane). In the proposed configuration, the phase modulation capability of the radially gradient metasurface is utilized in combination with a semicircular superstrate made of low-dielectric-constant material, placed at a height of 0.170 above and parallel to the antenna aperture. Firstly, the broadside beam of the patch antenna is tilted away from the normal direction by the phase modulation of the electric field over the aperture of the antenna. Beam steering in the E-plane is achieved by in-plane translation of the SCRGM in front of a stationary primary feed antenna, further modulating the phase. The aperture area and weight of the proposed SCRGM are 3.7702 and 22.0g, respectively. The compact antenna structure with integrated SCRGM offers -45 degrees to +45 degrees beam steering in the E-plane with reasonably constant gain in the range of 10-11dBi (with scan loss better than 1dB). The strategy of partially covering the antenna aperture and further translating the radially gradient metasurface enables a considerably wide beam scanning range using a compact configuration.
机译:提出了一种半圆形径向梯度元表面(SCRGM)结构以调制近场中的射频(RF)天线的电场的相位。元质表面部分地覆盖天线孔,从而促进梁在仰角(E面)中的梁倾斜。在所提出的配置中,径向梯度元表面的相位调制能力与由低介电常数材料制成的半圆形叠加器结合使用,以高于0.170的高度并平行于天线孔。首先,通过在天线的孔径上通过电场的相位调制,贴片天线的宽边梁从正常方向倾斜。通过在固定初级馈送天线前面的SCRGM的面内平移来实现E平面中的光束转向,进一步调节相位。所提出的SCRGM的孔径和重量分别为3.7702和22.0g。具有集成SCRGM的紧凑型天线结构在E-平面中提供-45度至+45度光束转向,在10-11dbi的范围内具有合理恒定的增益(扫描损耗优于1dB)。部分地覆盖天线孔并进一步平移径向梯度元表面的策略使得使用紧凑的配置能够实现相当宽的光束扫描范围。

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