A Novel Wideband Partially Reflective Surface for Antenna Gain Enhancement

A. Chaabane
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Abstract

A novel wideband partially reflective surface (PRS) for printed antennas gain enhancement is proposed in this paper. The proposed PRS is constructed by two layers separated by an air-gap. It is composed by an inductive patch with a star flower-shaped aperture etched on the bottom faces of its two layers and a capacitive star flower-shaped patch that is placed on the top face of its upper layer. The presented PRS with a broadband operation extending from 7.76 GHz to 11.16 GHz is proposed to improve the gain of printed antennas operating around this band. The usefulness of the proposed PRS is examined by placing an array of 8  9 over a single-layer printed feeding antenna (FA). The gain of the considered FA is considerably enhanced after the implementation of the PRS. Hence, the usefulness of the designed PRS is demonstrated for enhancing the gain of printed antennas operating in X-band.
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一种用于天线增益增强的新型宽带部分反射表面
提出了一种用于印刷天线增益增强的新型宽带部分反射面。拟议的PRS由两个由气隙分隔的层构成。它由在其两层的底面蚀刻有星花形孔径的电感贴片和放置在其上层的顶面上的电容星花形贴片组成。为了提高印刷天线在7.76 GHz ~ 11.16 GHz波段的增益,提出了在7.76 GHz ~ 11.16 GHz波段工作的PRS。通过在单层印刷馈电天线(FA)上放置8个9阵列来检验所提出的PRS的实用性。在实施PRS后,所考虑的FA的增益大大提高。因此,所设计的PRS对于提高x波段印刷天线的增益是有用的。
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