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Reconfigurable Transparent All-Dielectric Water-Based Metamaterial for Microstrip Patch Antenna Gain Enhancement

机译:用于微带贴片天线的可重新配置透明全介电水基超级材料增强

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摘要

This paper present transparent, all dielectric water-based metamaterial (MM) superstrates with reconfigurable characteristics is employed for gain and bandwidth enhancement of a water-based microstrip patch antenna. The water-based microstrip patch antenna is fed by an L-shape probe. All dielectric water-based MM unit-cell element consists of dielectric cubic boxes filled with water is designed and analyzed. The reconfigurable electric properties are achieved via changing the water height in the MM unit-cell element. Different arrangements of the MM array with water height tapering are optimized and designed for microstrip patch antenna gain enhancement. The MM array is used as a single layer superstrate placed normal to the microstrip patch. A water-based MM lens consists of three layers is designed to collimate the radiation from the microstrip patch antenna. The phase compensation in the MM lens is achieved via changing the water height in the MM unit-cell elements of the lens. A reconfigurable beam in different directions from -30 degrees to +30 degrees is steered by changing the water level distribution over the MM lens unit-cell elements. A full-wave analysis using the finite integration technique is used for the design and analysis of the water-based MM lens arrangements.
机译:本文存在透明,所有具有可重新配置特性的介电水基超级材料(MM)叠层用于增益和带宽增强水条微带贴片天线的增益和带宽增强。水基微带贴片天线由L形探针供给。所有介电水基MM单元电池元件由填充有水的介电立方盒组成,设计和分析。通过改变MM单元单元元件中的水高度来实现可重新配置的电性能。 MM阵列具有水高锥度的MM阵列的不同布置,并设计用于微带贴片天线增益增强。 MM阵列用作垂直于微带贴片的单层叠层。基于水的MM镜片由三层组成,设计用于从微带贴片天线加密辐射。通过改变镜片的MM单元单元元件中的水高,实现MM透镜中的相位补偿。通过改变MM透镜单元单元元件上的水位分布,通过从-30度到+30度的不同方向上的可重新配置光束。使用有限积分技术的全波分析用于水基MM镜头布置的设计和分析。

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