School of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.
School of Electronics Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea.
Sci Rep. 2020 Apr 22;10(1):6795. doi: 10.1038/s41598-020-63780-4.
The paper presents a coplanar waveguide (CPW)-fed ultra-miniaturized patch antenna operating in Industrial, Scientific and Medical (ISM) band (2.4-2.5 GHz) for biotelemetry applications. The proposed antenna structure is circular in shape and its ground plane is loaded with a pair of slots for obtaining circular polarization. In the proposed design, asymmetric square slots generate phase condition for right-hand circularly polarized (RHCP) radiation. And, by merely changing the position of the slots, either RHCP or left-hand circularly polarized (LHCP) radiation can be excited. In the proposed design, a meandered central strip is used for miniaturization. The simulations of the proposed antenna are carried out using Ansys HFSS software with a single-layer and multilayer human tissue models. The antenna shows good performance for different tissue properties owing to its wide axial ratio bandwidth and impedance bandwidth. The antenna is fabricated and measurements are carried out in skin mimicking phantom and pork. Simulated and measured performances of the antenna are in close agreement. The power link budget is also calculated using an exterior circularly polarized (CP) receiving antenna.
本文提出了一种工作在工业、科学和医疗(ISM)频段(2.4-2.5GHz)的共面波导(CPW)馈电超小型贴片天线,用于生物遥测应用。所提出的天线结构为圆形,其接地平面上加载一对缝隙,以获得圆极化。在提出的设计中,非对称方槽产生用于右手圆极化(RHCP)辐射的相位条件。并且,只需改变缝隙的位置,就可以激励 RHCP 或左旋圆极化(LHCP)辐射。在提出的设计中,采用曲折的中心条带进行小型化。使用 Ansys HFSS 软件对所提出的天线进行了仿真,该软件具有单层和多层人体组织模型。由于其宽轴比带宽和阻抗带宽,该天线在不同的组织特性下表现出良好的性能。该天线已制作,并在皮肤模拟体模和猪肉中进行了测量。天线的仿真和测量性能非常吻合。还使用外部圆极化(CP)接收天线计算了功率链路预算。