Faculty of Electrical Engineering and Computing, University of Zagreb, Unska 3, 10000 Zagreb, Croatia.
Sensors (Basel). 2022 Jan 28;22(3):1046. doi: 10.3390/s22031046.
One of the major challenges in the development of wearable antennas is to design an antenna that can at the same time satisfy technical requirements, be aesthetically acceptable, and be suitable for wearable applications. In this paper, a novel wearable antenna is proposed-textile realization of a slotted waveguide antenna. The antenna is realized using conductive fabric to manufacture the walls of a rectangular waveguide in which the slots were cut out. All connections and cuts are sewn with conductive thread taking over advantages of the traditional process of manufacturing textile objects. The developed slotted waveguide array prototype, containing three slots and designed for operation in the 5.8-GHz ISM band, is experimentally characterized and compared to an equivalent metallic antenna. The achieved operating bandwidth is larger than 300 MHz in both cases. The measured gain of a textile slotted waveguide array is around 9 dBi with a radiation efficiency larger than 50% in the whole operating bandwidth, i.e., the textile array showed a 2 dB lower gain in comparison to the metallic counterpart. The gain is stable in the whole bandwidth and the radiation patterns do not differ. The results demonstrated that such textile antennas are suitable for body-centric communication and sensor systems and can be integrated into clothing, e.g., into a smart safety vest or into a uniform. Further analysis of various realizations of slotted waveguide antennas is presented showing that different versions of the proposed antenna can be used in all three off-body, on-body, and in-body communication scenarios.
在可穿戴天线的发展中,面临的主要挑战之一是设计一种既能满足技术要求、又能在美学上被接受、又能适用于可穿戴应用的天线。本文提出了一种新型的可穿戴天线——开槽波导天线的纺织实现。该天线采用导电织物制造矩形波导的壁,在波导上切割出缝隙。所有的连接和切口都用导电线缝合,利用了传统的制造纺织物的工艺优势。开发的开槽波导阵列原型包含三个缝隙,设计用于在 5.8GHz 的 ISM 频段工作,对其进行了实验表征,并与等效的金属天线进行了比较。在两种情况下,所实现的工作带宽都大于 300MHz。在整个工作带宽内,纺织开槽波导阵列的增益约为 9dBi,辐射效率大于 50%,即与金属对应物相比,纺织阵列的增益低 2dB。增益在整个带宽内稳定,辐射模式没有差异。结果表明,这种纺织天线适用于以人体为中心的通信和传感器系统,可以集成到服装中,例如智能安全背心或制服中。进一步分析了各种开槽波导天线的实现,表明所提出的天线的不同版本可以用于所有三种非人体、人体和体内通信场景。