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Novel Corrugated Microstrip Patch Antenna: Effects on Resonant Frequency, Coupling and Cross Polarization

机译:新型波纹微带贴片天线:对谐振频率,耦合和交叉极化的影响

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Microstrip patch antennas are very often used in array configurations where there might be specific requirements such as antenna gain, beamwidth and polarization. In this paper, a single patch antenna element is corrugated in different ways and depths as a novel design geometry. As a building block in an array, the proposed geometry is studied in detail to investigate its effects on the well-known drawbacks of a microsrtip patch antenna, i.e. the fringing effects and the parasitic coupling arising between array elements. It is found that patch corrugations strongly affect the resonant frequency, so that, if properly controlled, they might compensate the arising fringing effect and almost eliminate the undesired coupling between antenna elements. And surprisingly, the cross-polarization levels in the H-plane (unacceptably high for some applications) are greatly reduced and can be eliminated to some extent on the cost of a slight reduction of the gain. Full-wave analysis simulations with HFSS (finite element) and Sonnet (MoM) software are used in the investigations.
机译:微带贴片天线通常用于阵列配置中,在这些配置中可能会有特定的要求,例如天线增益,波束宽度和极化。在本文中,单个贴片天线元件以不同的方式和深度形成波纹,这是一种新颖的设计几何形状。作为阵列中的构建块,将对所提出的几何形状进行详细研究,以研究其对微尖端贴片天线众所周知的缺点的影响,即边缘效应和阵列元件之间产生的寄生耦合。已经发现,贴片波纹强烈影响谐振频率,因此,如果得到适当控制,它们可以补偿出现的边缘效应并几乎消除天线元件之间的不良耦合。令人惊讶的是,H平面中的交叉极化电平(对于某些应用而言不可接受地很高)被大大降低,并且可以以稍微降低增益的代价在某种程度上消除这种情况。在研究中使用了具有HFSS(有限元)和Sonnet(MoM)软件的全波分析模拟。

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