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Simulation of 3D Printed Antenna System using Liquid Metal Antenna Elements

机译:使用液态金属天线元件模拟3D打印天线系统

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This paper describes the construction and simulation of a 3D-printed multi-element two-dimensional antenna array using Eutectic Gallium-Indium (EGaIn) liquid metal components. This proof-of-concept system validates the use of liquid metal for highly adaptable antenna patterns that are configurable in frequency, directivity, gain, and/or polarization via changes in the effective antenna lengths/volume. Moreover, this adaptability is achieved within a single shared volume, enabling system-relevant extensions via additive manufacturing and/or modular pre-formed antenna structures within a chosen radome. Overall performance of this aggregated adaptive antenna system closely resembles that of distinct apertures, save for minimal parasitic effects from the feed structures of non-utilized apertures.
机译:本文介绍了使用共晶镓-铟(EGaIn)液态金属组件制作3D打印的多元素二维天线阵列的过程和仿真。这个概念验证系统验证了液态金属在高度适应性天线方向图上的使用,该天线方向图可通过有效天线长度/体积的变化在频率,方向性,增益和/或极化方面进行配置。此外,这种适应性是在单个共享体积内实现的,从而可以通过增材制造和/或所选天线罩内的模块化预制天线结构实现与系统相关的扩展。这种聚合的自适应天线系统的总体性能非常类似于不同孔径的性能,除了未利用孔径的馈电结构带来的寄生效应最小之外。

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