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A dual band left-handed metamaterial-enabled design for satellite applications

机译:用于卫星应用的双频带左手超材料设计

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The focus of this research paper is to produce a novel left-handed metamaterial design for satellite frequency application. The broad usage of metamaterial in satellite application results in the creation of a compact and dual band exotic material. A new combination of circular and square ring metamaterial (CSM) design is obtained through this research. This new CSM design developed on dielectric substrate material with thickness of 1.6?mm that commonly called Epoxy Resin Fiber (FR-4). The CSM design made up of three circular rings and one square ring on the substrate layer. Computer Simulation Technology (CST) was utilised to calculate electromagnetic properties of the suggested CSM structure by adopted Finite Integration Technique (FIT). A couple of metamaterial structures were exploited to perform parametric studies while changing the dielectric base material type and array cell design. A frequency ranges between 0 and 18?GHz were selected for this numerical simulation procedure. The recommended CSM design manifests resonance frequencies exactly at 5.80 GHZ which falls in C-band and 16.61?GHz in Ku-band. In addition, the experimental result of the proposed metamaterial design manifest resonance frequencies at 5.83 and 16.71?GHz, transform this design appropriate for the C- and Ku-bands usage. Thus, with a slight difference among the simulated and measured results, the comparison was largely in agreement. Furthermore, the resonance frequency at C-band manifest left-handed metamaterial (LHM) behaviour. Hence, the proposed CSM design with special characteristics entitle for satellite applications.
机译:本研究论文的重点是为卫星频率应用生产新的左手超材料设计。超材料在卫星应用中的广泛用法导致创建紧凑型和双带异乎寻常的材料。通过该研究获得了新的圆形和方形超材料(CSM)设计的组合。这种新的CSM设计在介电基板材料上开发,厚度为1.6Ωmm,通常称为环氧树脂纤维(FR-4)。 CSM设计由三个圆环组成,基板层上的一个方形环。计算机仿真技术(CST)用于通过采用的有限集成技术(FIT)计算建议的CSM结构的电磁特性。利用几种超材料结构来进行参数研究,同时改变介电基材类型和阵列单元设计。选择在0到18°之间的频率范围为此数值模拟程序。推荐的CSM设计表现出谐振频率完全在5.80 GHz,落在C波段和16.61个GHz中的KU波段。此外,所提出的超材料设计表现清单谐振频率在5.83和16.71?GHz,改变了适合C-和KU频段使用的设计。因此,在模拟和测量结果之间具有轻微的差异,比较很大程度上是一致的。此外,C波段的共振频率表现出左手超级材料(LHM)行为。因此,拟议的CSM设计具有特殊特性的特殊特征适用于卫星应用。

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