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High gain microstrip antennas loaded with high characteristic impedance superstrates

机译:高增益微带天线装载高特色阻抗超级型

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It is shown that, under some resonance conditions, a microstrip patch antenna can be designed to achieve the highest possible gain when covered with a superstrate at the proper distance in free space. The transmission line analogy and the cavity model are used to deduce the resonance conditions required to achieve the highest gain. The resonance conditions include the condition on spacing between the antenna's substrate and the superstrate and the thickness of the superstrate. The permeability and permittivity of the superstrate is determined based on these resonant lengths and the appropriate characteristic impedance of each layer in this multilayered structure. The results are verified using both analytical and numerical methods. The effect of anisotropy of the superstrate is numerically investigated. The design criteria proposed here will reduce the total profile of the radiating system by 50% when compared with previous trends.
机译:结果表明,在一些共振条件下,可以设计微带贴片天线以在自由空间的适当距离处用叠层覆盖时实现最高可能的增益。传输线模拟和腔模型用于推测达到最高增益所需的共振条件。共振条件包括天线基板和超级夹持的间隔和超级夹持的条件。基于这些谐振长度和该多层结构中的每层的适当特征阻抗来确定超级渗透性和介电常数。使用分析和数值方法验证结果。数值研究了超级替代的各向异性的影响。与以前的趋势相比,此处提出的设计标准将减少辐射系统的总曲线50%。

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