A Novel Ultra - Wide Band Hybrid Antenna Sensor for WBAN Applications

Parikshit Vasisht, Taruna Parashar, Sudhakar Ranjan, A. Kathait, Ravi Chandra, N. Chattoraj
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Abstract

A novel, hybrid and miniaturized sensor element design for WBAN is proposed in this manuscript. In this letter, hybridisation of circular ring shape micro strip patch is done with rectangular dielectric resonator in order to achieve ultra-wide bandwidth of 9.1 GHz. Introduction of defected ground structure (DGS) excites multiple higher order modes. Amalgamation of these multiple mode resonances, generate an impedance bandwidth of 95%. The proposed design yields a resonating bandwidth of 9.1 GHz (5 -14.1 GHz) with an average radiation efficiency of 90%. Peak gain of 5.1dBi is obtained in entire operating bandwidth. Antenna is designed and simulated using FDTD method and is proved to be an ardent candidate for On body WBAN technologies due to its high gain, compact size with wide impedance bandwidth. The comparison of steady and simulated results shows a good agreement with antenna.
一种用于WBAN应用的新型超宽带混合天线传感器
本文提出了一种新型的、混合的、小型化的无线宽带网络传感器元件设计方案。本文采用矩形介质谐振腔对环形微带贴片进行杂化处理,实现了9.1 GHz的超宽带带宽。缺陷地基结构(DGS)的引入激发了多个高阶模态。这些多模共振的合并,产生95%的阻抗带宽。提出的设计产生9.1 GHz (5 -14.1 GHz)的谐振带宽,平均辐射效率为90%。在整个工作带宽下获得5.1dBi的峰值增益。采用时域有限差分(FDTD)方法对天线进行了设计和仿真,并以其高增益、体积小、阻抗带宽宽的特点,被证明是机载WBAN技术的热门候选。稳态与仿真结果的比较表明,仿真结果与天线结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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