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A Three-Element Biomimetic Antenna Array With an Electrically Small Triangular Lattice

机译:具有小电三角格子的三元素仿生天线阵列

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We present a three-element biomimetic antenna array (BMAA) with an electrically small triangular lattice. The proposed array consists of three identical quarter-wavelength-long monopoles each positioned at a corner of an equilateral triangle whose side length is , where is the free-space wavelength. Using a triangular lattice allows for maximizing the phase sensitivity of the array over a 360° angular range. Moreover, it will allow for resolving ambiguities when such BMAAs are used in small-aperture direction finding systems. The three strongly coupled antennas are connected to an external coupling network with three inputs and three outputs. This network augments the mutual coupling between the strongly coupled antennas and is designed to maximize the output phase difference between each two antenna elements without sacrificing the output power level of the array compared with a conventional array occupying the same aperture. A modal analysis technique is also presented and used to design a prototype of the proposed array operating at 600 MHz. This prototype was fabricated and experimentally characterized. Measurement results are shown to be in very good agreement with theory.
机译:我们提出了一个电小三角晶格的三元素仿生天线阵列(BMAA)。所提出的阵列由三个相同的四分之一波长长的单极子组成,每个单极子位于等边三角形的一角,其边长为,其中是自由空间波长。使用三角晶格可以在360°角度范围内最大化阵列的相位灵敏度。此外,当在小孔径测向系统中使用此类BMAA时,它将允许解决歧义。三个强耦合天线连接到具有三个输入和三个输出的外部耦合网络。与占用相同孔径的常规阵列相比,该网络增强了强耦合天线之间的相互耦合,并被设计为在不牺牲阵列输出功率水平的情况下,使每两个天线元件之间的输出相位差最大化。还提出了一种模态分析技术,并将其用于设计在600 MHz下工作的拟议阵列的原型。该原型被制造并通过实验表征。测量结果表明与理论非常吻合。

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