A low-profile omnidirectional planar antenna with vertical polarization employing two in-phase elements

Jungsuek Oh, Kamal Sarabandi
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引用次数: 7

Abstract

A novel technique for designing a low-profile miniaturized omnidirectional planar antenna with vertical polarization is presented. The proposed antenna is designed using two short in-phase vertical elements. To achieve in-phase radiation the short vertical pins should be λ/2 away from each other. To minimize the λ/2 transmission line a T-type 180 degree phase shifter with a capacitive impedance inverter can be used. However, the drawback of using this phase shifter is the generation of an out-of-phase conduction current going vertically down through the capacitor. The radiated fields from the conduction current cancel out radiated fields from in-phase currents on the two vertical elements, leading to the suppression of vertically polarized radiation. In this study, the conduction current is eliminated by substituting the capacitor connected to the shorting via with an open stub. The geometry of the open stub is optimized to obtain appropriate capacitance values giving the antenna lateral dimensions (λ/8X λ/8) and height (λ/40). An important advantage of the proposed antenna is omnidirectional radiation pattern and high gain.
采用两个同相单元的垂直极化的低轮廓全向平面天线
提出了一种设计低轮廓小型化垂直极化全向平面天线的新方法。该天线采用两个短同相垂直单元设计。为了实现同相辐射,短的垂直引脚彼此之间的距离应为λ/2。为了最小化λ/2传输线,可以使用带电容阻抗逆变器的t型180度移相器。然而,使用这种移相器的缺点是产生一个跨相传导电流垂直向下通过电容器。传导电流的辐射场抵消了两个垂直元件上同相电流的辐射场,导致垂直极化辐射被抑制。在本研究中,通过将连接在短路通孔上的电容器替换为一个开路短管来消除传导电流。开放短段的几何结构进行了优化,以获得适当的电容值,从而给出天线的横向尺寸(λ/8X λ/8)和高度(λ/40)。该天线的一个重要优点是全向辐射方向图和高增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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