Reconfigurable wearable antenna for 5G applications using nematic liquid crystals

Yuanjie Xia, Mengyao Yuan, Alexandra Dobrea, Chong Li, Hadi Heidari, Nigel Mottram, Rami Ghannam
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引用次数: 1

Abstract

Abstract The antenna is one of the key building blocks of many wearable electronic devices, and its functions include wireless communications, energy harvesting, and radiative wireless power transfer. In an effort to realize lightweight, autonomous, and battery‐less wearable devices, we demonstrate a reconfigurable antenna design for 5G wearable applications that requires ultra‐low driving voltages (0.4–0.6 V) and operates over a high frequency range (3.3–3.8 GHz). For smart glasses applications, previous antenna designs were ‘fixed’ and mounted on the eyeglass frame itself. Here, we demonstrate a reconfigurable design that could be achieved on the lens itself using an anisotropic liquid crystal (LC) material. We demonstrate how liquid crystal alignment and electric field patterns strongly influence the tuning capabilities of these antennas in the gigahertz range and present a smart, reconfigurable spiral antenna system with a liquid crystal substrate.
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使用向列液晶的5G应用的可重构可穿戴天线
天线是许多可穿戴电子设备的关键组成部分之一,其功能包括无线通信、能量收集和辐射无线电力传输。为了实现轻量化、自主和无电池的可穿戴设备,我们展示了一种可重构天线设计,用于5G可穿戴应用,需要超低驱动电压(0.4-0.6 V),并在高频范围(3.3-3.8 GHz)内工作。对于智能眼镜应用,以前的天线设计是“固定”的,安装在眼镜框架上。在这里,我们展示了一种可重构设计,该设计可以使用各向异性液晶(LC)材料在透镜本身上实现。我们展示了液晶对准和电场模式如何强烈影响这些天线在千兆赫范围内的调谐能力,并提出了一个智能的、可重构的液晶基板螺旋天线系统。
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