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Low Profile Vertically Polarized Omnidirectional Wideband Antenna With Capacitively Coupled Parasitic Elements

机译:具有电容耦合寄生元件的薄型垂直极化全向宽带天线

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摘要

This communication presents a low profile and electrically small wideband antenna with omnidirectional radiation pattern and vertical polarization. A novel design approach manipulating the topology of a low profile folded monopole antenna with capacitively coupled parasitic elements in the same plane is presented to achieve omnidirectional radiation pattern. The 10-dB return loss fractional bandwidth of 43% is achieved with the dimension of 0.2λLF ×0.2λLF ×0.06λLF where λLF is the wavelength at the lowest frequency of the operation. Unlike the convention wideband λ/4 monopole antennas utilizing inductively coupled parasitic elements, the λ/2 folded monopole antenna allows for positioning the capacitively coupled parasitic elements in the middle of the antenna where maximum electric stored energy is formed. This, together with reducing the lateral dimension of the folded monopole antenna, enables the cancellation of radiated fields from electric currents in the horizontal plane of the proposed antenna, which is essential to achieve vertically polarized omnidirectional radiation. The compact parasitic elements introduce additional resonances that significantly increase the antenna bandwidth. Effects of design parameters on two resonant frequencies and impedance matching to a 50 Ω feed are investigated using the equivalent circuit model of the parasitic element and full-wave electromagnetic (EM) simulations. Based on this analysis, a design procedure to optimize the antenna topology is established.
机译:该通信提出了一种具有全向辐射方向图和垂直极化的薄型,电气尺寸小的宽带天线。提出了一种新颖的设计方法,该方法可操纵在同一平面上具有电容耦合寄生元件的低剖面折叠单极天线的拓扑结构,以实现全向辐射方向图。 10 dB回波损耗分数带宽为43%,尺寸为0.2λ LF ×0.2λ LF ×0.06λ LF λ LF 是最低频率的波长。与利用感应耦合寄生元件的常规宽带λ/ 4单极天线不同,λ/ 2折叠单极天线允许将电容耦合寄生元件放置在天线的中间,在天线中形成最大的储能能量。这与减小折叠的单极天线的横向尺寸一起,使得能够消除所提出天线的水平面中电流的辐射场,这对于实现垂直极化的全向辐射是必不可少的。紧凑的寄生元件会引入额外的谐振,从而大大增加天线带宽。使用寄生元件的等效电路模型和全波电磁(EM)仿真,研究了设计参数对两个谐振频率和阻抗匹配至50Ω馈源的影响。基于此分析,建立了优化天线拓扑的设计程序。

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