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Biomimetic Antenna Arrays Based on the Directional Hearing Mechanism of the Parasitoid Fly Ormia Ochracea

机译:基于拟寄生蝇Ormia ochracea定向听觉机制的仿生天线阵列。

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摘要

We present a thorough examination of two-element antenna arrays that mimic the sense of directional hearing of the parasitoid fly Ormia Ochracea and examine the design tradeoffs of such arrays. Recently, it was demonstrated that these antenna arrays demonstrate enhanced sensitivity to the direction of incidence of an electromagnetic wave, compared to regular arrays occupying the same aperture. This, however, comes at the expense of sacrificing the available power at the outputs of such arrays. In this paper, we present a model for these two-element biomimetic antenna arrays (BMAAs) that takes the mutual coupling effects into account. Using this model, we examine the tradeoffs that exist between the phase enhancement, which can be achieved from these arrays, and their output power levels. We demonstrate that for any given desired phase enhancement factor, an optimum BMAA design exists that maximizes the output power level of the array. We also show that strong mutual coupling between the two antennas can be exploited to enhance the output power of the array. A method for designing practical two-element BMAAs is also presented along with simulation and measurement results of a fabricated prototype.
机译:我们目前对模仿寄生蜂Ormia Ochracea的定向听觉的两元素天线阵列进行了全面研究,并研究了这种阵列的设计折衷方案。最近,已经证明,与占据相同孔径的常规阵列相比,这些天线阵列对电磁波的入射方向表现出增强的灵敏度。然而,这是以牺牲这种阵列的输出处的可用功率为代价的。在本文中,我们提出了一种考虑到互耦效应的两元素仿生天线阵列(BMAA)的模型。使用该模型,我们检查了可以从这些阵列实现的相位增强与其输出功率水平之间存在的权衡。我们证明,对于任何给定的所需相位增强因子,都存在一种最佳BMAA设计,该设计可使阵列的输出功率水平最大化。我们还表明,可以利用两个天线之间的强互耦合来增强阵列的输出功率。还提出了一种设计实用的两元素BMAA的方法,以及所制造原型的仿真和测量结果。

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