IEEE Trans Biomed Circuits Syst. 2018 Dec;12(6):1383-1391. doi: 10.1109/TBCAS.2018.2857466. Epub 2018 Aug 1.
A wideband wearable button antenna working around 2.4 GHz is proposed in this paper. The function of the textile antenna ground is analyzed based on characteristic mode theory. By properly locating the button on the ground, the latter can be efficiently excited and operates as a radiator. This is shown to greatly increase the impedance bandwidth. The antenna is analyzed both in free space and on the human body. A prototype is fabricated, and the measured results agree satisfactorily with the simulations. In free space, the bandwidth, the realized gain, and radiation efficiency are 658 MHz, 1.8 dBi, and 97%, respectively. While on the human body, the values can reach 788 MHz, 5.1 dBi, and 71%, respectively. This wide band behavior provides robustness across different environments and to relatively large fabrication tolerances. The specific absorption rate is below 0.45 W/kg for an equivalent isotropically radiated power of 20 dBm.
本文提出了一种工作在 2.4GHz 左右的宽带可穿戴纽扣天线。基于特征模式理论分析了纺织天线地的功能。通过合理地在天地上放置纽扣,有效地激发了天线,使其作为辐射器工作。这大大增加了阻抗带宽。该天线在自由空间和人体上进行了分析。制作了一个原型,并对其进行了测试,结果与仿真结果吻合较好。在自由空间中,带宽、实现增益和辐射效率分别为 658MHz、1.8dBi 和 97%。而在人体上,这些值分别可达 788MHz、5.1dBi 和 71%。这种宽带行为在不同的环境和相对较大的制造容差下都具有稳健性。当等效各向同性辐射功率为 20dBm 时,特定吸收率低于 0.45W/kg。