Department of Electronics and Communication Engineering, Karunya Institute of Technology and Sciences, Coimbatore, India.
Electromagn Biol Med. 2022 Jan 2;41(1):35-43. doi: 10.1080/15368378.2021.1993892. Epub 2021 Nov 4.
A highly miniaturized planar monopole antenna is presented for biomedical applications. The proposed antenna utilizes polydimethylsiloxane (PDMS) with dielectric constant 2.7 and loss tangent 0.0314 with thickness 0.3 mm as substrate and with thickness 0.2 mm as superstrate. A copper foil of 0.03 mm thickness is used for radiating elements. The proposed structure contains a unique structure, made of loop-based structure with three rectangular-shaped stubs are added to tune the operating frequency to 5.8 GHz and to improve the reflection coefficient. The incorporation of stubs achieved the intended frequency of operation, utilization of the loop-based structure for designing the antenna achieved high miniaturization. The proposed antenna is analyzed under various conditions like under skin, muscle, stomach, small intestine,, colon etc., and comparative analysis is presented with the help of reflection coefficient, radiation patterns and specific absorption rate (SAR). SAR is evaluated over a volume of 1 g tissue as per the standards of Federal Communications Commission (FCC). SAR value of the antenna is below 1.6 W/kg for input power 1.9 mW. The simulated analysis showed that the designed antenna is suitable for both implantable and endoscopic applications. Moreover the simulated and measured analysis for reflection coefficient of the proposed antenna showed good agreement.
一种用于生物医学应用的高度小型化平面单极天线被提出。所提出的天线利用介电常数为 2.7 和损耗正切为 0.0314、厚度为 0.3 毫米的聚二甲基硅氧烷(PDMS)作为基底,厚度为 0.2 毫米的 PDMS 作为上层。厚度为 0.03 毫米的铜箔用于辐射元件。所提出的结构包含一个独特的结构,由基于环形的结构制成,并添加了三个矩形短截线来调谐工作频率至 5.8GHz,并改善反射系数。短截线的加入实现了预期的工作频率,基于环形结构的设计实现了天线的高小型化。所提出的天线在各种条件下进行了分析,如在皮肤、肌肉、胃、小肠、结肠等下,并借助于反射系数、辐射模式和比吸收率(SAR)进行了比较分析。SAR 根据联邦通信委员会(FCC)的标准在 1 克组织的体积内进行评估。对于输入功率为 1.9 毫瓦的天线,SAR 值低于 1.6W/kg。模拟分析表明,所设计的天线适用于植入式和内窥镜应用。此外,所提出的天线的反射系数的模拟和测量分析显示出良好的一致性。