Zhu Jia, Hu Zhihui, Zhang Senhao, Zhang Xianzhe, Zhou Honglei, Xing Chenghao, Guo Huaiqian, Qiu Donghai, Yang Hongbo, Song Chaoyun, Cheng Huanyu
Department of Engineering Science and Mechanics, The Pennsylvania State University, University Park 16802, Pennsylvania, United States.
School of Transportation and Logistics Engineering, Wuhan University of Technology, Wuhan 430063, China.
ACS Appl Mater Interfaces. 2022 Mar 16;14(10):12855-12862. doi: 10.1021/acsami.1c24651. Epub 2022 Mar 7.
The development of wearable/stretchable electronics could largely benefit from advanced stretchable antennas with excellent on-body performance upon mechanical deformations. Despite recent developments of stretchable antennas based on intrinsically stretchable conductors, they are often affected by lossy human tissues and exhibit resonant frequency shifts upon stretching, preventing their applications in on-body wireless communication and powering. This work reports a three-dimensional (3D) stretchable wideband dipole antenna from mechanical assembly to simultaneously reduce the frequency detuning and enhance on-body performance. The large bandwidth is achieved by coupling two resonances from two pairs of radiation arms, which is well-maintained even when the antenna is directly placed on human bodies or stretched over 25%. Such an excellent on-body performance allows the antenna to robustly transmit the wireless data and energy. The design of the 3D stretchable wideband dipole antenna with significantly enhanced on-body wireless communication performance was validated by an experimental demonstration that features a small difference in the wirelessly received power between the on-body and off-body use. The combination of the mechanically assembled 3D geometries and the coupled mechanical-electromagnetic properties can open up new opportunities in deformable 3D antennas and other microwave devices with excellent on-body performance and tunable properties.
可穿戴/可拉伸电子设备的发展在很大程度上受益于先进的可拉伸天线,这种天线在机械变形时具有出色的体表性能。尽管基于本征可拉伸导体的可拉伸天线近期有所发展,但它们常常受到有损人体组织的影响,并且在拉伸时会出现谐振频率偏移,这阻碍了它们在体表无线通信和供电方面的应用。这项工作报道了一种从机械组装角度出发的三维(3D)可拉伸宽带偶极天线,以同时减少频率失谐并增强体表性能。通过耦合来自两对辐射臂的两个谐振来实现大带宽,即使天线直接放置在人体上或拉伸超过25%,该带宽仍能得到良好保持。如此出色的体表性能使天线能够稳健地传输无线数据和能量。通过实验演示验证了具有显著增强的体表无线通信性能的3D可拉伸宽带偶极天线的设计,该演示的特点是在体表使用和体外使用时无线接收功率的差异很小。机械组装的3D几何结构与耦合的机械 - 电磁特性相结合,可以为具有出色体表性能和可调特性的可变形3D天线及其他微波器件带来新机遇。