Awan Wahaj Abbas, Abbas Anees, Naqvi Syeda Iffat, Elkamchouchi Dalia H, Aslam Muhammad, Hussain Niamat
Department of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, Republic of Korea.
Telecommunication Engineering Department, University of Engineering and Technology, Taxila 47050, Pakistan.
Micromachines (Basel). 2023 Sep 27;14(10):1842. doi: 10.3390/mi14101842.
A conformal tri-band antenna tailored for flexible devices and body-centric wireless communications operating at the key frequency bands is proposed. The antenna is printed on a thin Rogers RT 5880 substrate, merely 0.254 mm thick, with an overall geometrical dimension of 15 × 20 × 0.254 mm. This inventive design features a truncated corner monopole accompanied by branched stubs fed by a coplanar waveguide. The stubs, varying in length, serve as quarter-wavelength monopoles, facilitating multi-band functionality at 2.45, 3.5, and 5.8 GHz. Given the antenna's intended applications in flexible devices and body-centric networks, the conformability of the proposed design is investigated. Furthermore, an in-depth analysis of the Specific Absorption Rate (SAR) is conducted using a four-layered human tissue model. Notably, the SAR values for the proposed geometry at 2.45, 3.5, and 5.8 GHz stand at 1.48, 1.26, and 1.1 W/kg for 1 g of tissue, and 1.52, 1.41, and 0.62 W/kg for 10 g of tissue, respectively. Remarkably, these values comfortably adhere to both FCC and European Union standards, as they remain substantially beneath the threshold values of 1.6 W/kg and 2 W/kg for 1 g and 10 g tissues, respectively. The radiation characteristics and performance of the antenna in flat and different bending configurations validate the suitability of the antenna for flexible devices and body-centric wireless communications.
本文提出了一种适用于柔性设备以及工作在关键频段的以人体为中心的无线通信的共形三频段天线。该天线印刷在厚度仅为0.254毫米的薄型罗杰斯RT 5880基板上,整体几何尺寸为15×20×0.254毫米。这种创新设计的特点是有一个截角单极子以及由共面波导馈电的分支短截线。这些长度不同的短截线充当四分之一波长单极子,有助于在2.45、3.5和5.8吉赫兹实现多频段功能。鉴于该天线在柔性设备和以人体为中心的网络中的预期应用,对所提出设计的适形性进行了研究。此外,使用四层人体组织模型对比吸收率(SAR)进行了深入分析。值得注意的是,对于所提出的几何结构,在2.45、3.5和5.8吉赫兹时,1克组织的SAR值分别为1.48、1.26和1.1瓦/千克,10克组织的SAR值分别为1.52、1.41和0.62瓦/千克。值得注意的是,这些值完全符合美国联邦通信委员会(FCC)和欧盟标准,因为它们分别远低于1克和10克组织的阈值1.6瓦/千克和2瓦/千克。天线在平面和不同弯曲配置下的辐射特性和性能验证了该天线适用于柔性设备和以人体为中心的无线通信。