Liu Feng-Xue, Meng Fan-Yu, Chen Yu-Jia, Gao Zhou-Hao, Cui Jie, Zhang Le
School of Physics and Electronic Engineering, Jiangsu Normal University, Xuzhou 221116, China.
Jiangsu Xiyi Advanced Materials Research Institute of Industrial Technology, Xuzhou 221400, China.
Micromachines (Basel). 2024 Aug 27;15(9):1081. doi: 10.3390/mi15091081.
A textile bandwidth-enhanced half-mode substrate-integrated cavity (HMSIC) antenna based on embroidered shorting vias is designed. Based on the simulated results of the basic HMSIC antenna, two embroidered hollow posts with square cross-sections are added as shorting vias at the intersections of the zero-E traces of the TM210HM and TM020HM modes to shift the TM010HM-mode band to merge with the bands of the higher-order modes for bandwidth enhancement. A prototype is practically fabricated based on computerized embroidery techniques. Measurement results show that the prototype is of an expanded -10 dB impedance band of 4.87~6.17 GHz (23.5% fractional bandwidth), which fully covers the 5 GHz wireless local area network (WLAN) band. The simulated radiation efficiency and maximum gain of the proposed antenna are above 97% and 7.6 dBi, respectively. Furthermore, simulations and measurements prove its robust frequency response characteristic in the proximity of the human tissues or in bending conditions, and the simulations of the specific absorption rate (SAR) prove its electromagnetic safety on the human body.
设计了一种基于刺绣短路过孔的纺织带宽增强型半模基片集成腔体(HMSIC)天线。基于基本HMSIC天线的仿真结果,在TM210HM和TM020HM模式的零E迹线交点处添加两个方形横截面的刺绣空心柱作为短路过孔,以移动TM010HM模式频段,使其与高阶模式频段合并,从而实现带宽增强。基于计算机刺绣技术实际制作了一个原型。测量结果表明,该原型的-10 dB阻抗带宽扩展为4.87~6.17 GHz(分数带宽为23.5%),完全覆盖了5 GHz无线局域网(WLAN)频段。所提天线的仿真辐射效率和最大增益分别高于97%和7.6 dBi。此外,仿真和测量证明了其在人体组织附近或弯曲条件下具有稳健的频率响应特性,比吸收率(SAR)的仿真证明了其对人体的电磁安全性。