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Gain Enhancement of Microstrip Antenna Using 3D Water-Based Metamaterial

机译:使用3D水基超材料增强微带天线的增益

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In this paper, the totally transparent microstrip antenna consists of all dielectric materials is proposed for wireless communications. A water-based microstrip antenna is fed by an L-shaped probe. All dielectric water-based meta material (MM) unit-cell element consists of dielectric cubic boxes filled with water. It is designed and optimized for MM characteristics in the frequency band from 4 GHz to 4.4 GHz. A reconfigurable MM electric properties is achieved by changing the water height in the MM unit-cell element. A water-based MM lens consists of three layers is designed to collimate the radiation from the microstrip antenna. The phase compensation in the MM lens is achieved by changing the water heights in the MM unit-cell elements of the lens. A reconfigurable beam in different directions from -30° to +30° is steered by changing the water level distribution over the MM lens unit-cell elements. A fullwave analysis using the finite integration technique is used for the design and analysis of the water-based MM lens arrangements.
机译:本文提出了一种由所有介电材料组成的全透明微带天线,用于无线通信。水性微带天线由L形探头供电。所有介电的水基超材料(MM)晶胞元素均由充满水的介电立方盒组成。针对4 GHz至4.4 GHz频带内的MM特性进行了设计和优化。通过更改MM单元电池元件中的水高度,可实现MM电气特性的可重新配置。一种水基MM透镜,由三层组成,用于准直微带天线的辐射。 MM镜头中的相位补偿是通过更改镜头的MM晶胞元件中的水高来实现的。通过改变MM透镜单元元件上的水位分布,可以控制从-30°到+ 30°不同方向的可重配置光束。使用有限积分技术进行的全波分析用于水基MM镜头装置的设计和分析。

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