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Study of Dual Band Wearable Antennas Using Commonly Worn Fabric Materials

机译:用常用的织物材料研究双频可穿戴天线

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摘要

In recent years, body-centric communication has become one of the most attractive fields of study. The versatile applications of body-centric communication not only being used for health monitoring, but also for real-time communication purposes in special occupations. They are important for supporting a population with increasing life expectancy and increase the probability of survival for the people suffering from chronic illness.;For both wearable and implantable form of body-centric communication, characterizing the system electromagnetically is very important. Given the constraints in power, size, weight and conformity, one of the most challenging parts become the designing antenna for such communication systems. Wearable antennas are the most popular option regarding these issues.;Wearable antennas are easier and simpler to mount on clothing when they are made of textile materials. In the process of designing a textile antenna, the availability of the fabrics is pivotal to mount on regularly worn clothes. In this report, several designs of a co-planar waveguide microstrip patch antenna are presented. Instead of felt fabric, the antenna was modified using 100% polyester and cotton fabric for the substrate material. A parasitic patch slot was created on the co-planar ground plane to achieve the dual band resonance frequencies at 2.4 GHz and 5.15 GHz. The geometrical modifications of the antennas were described and their performances were analyzed. The antenna achieved resonating frequency with a thinner substrate as the dielectric constant went higher for the fabrics. The design with different fabric materials was first simulated in CST Microwave Studio, then fabricated and measured in a regular environment. They were also mounted on a 3-D printed human body model to analyze the bending effect. The design of the antennas shows satisfactory performance with a good --10dB bandwidth for both the lower and higher desired resonating frequency band.
机译:近年来,以身体为中心的交流已成为最有吸引力的研究领域之一。以身体为中心的通讯的广泛应用不仅用于健康监控,而且还用于特殊职业中的实时通讯。它们对于支持人们增加预期寿命并增加患有慢性疾病的人的生存率非常重要。对于以可穿戴和可植入形式的以身体为中心的通信方式,以电磁方式表征系统非常重要。考虑到功率,尺寸,重量和一致性方面的限制,最具挑战性的部分之一便成为此类通信系统的设计天线。在这些问题上,可穿戴天线是最受欢迎的选择。当可穿戴天线由纺织材料制成时,它们更易于安装。在设计纺织天线的过程中,织物的可用性对于将其安装在定期穿着的衣服上至关重要。在此报告中,介绍了共面波导微带贴片天线的几种设计。代替毡布,天线是使用100%聚酯和棉织物作为基板材料进行修改的。在共面接地面上创建了一个寄生贴片缝隙,以实现2.4 GHz和5.15 GHz的双频带谐振频率。描述了天线的几何形状,并分析了它们的性能。当织物的介电常数变高时,天线可以用更薄的基板实现谐振频率。首先,在CST Microwave Studio中模拟了具有不同织物材料的设计,然后在常规环境中进行了制造和测量。它们还安装在3-D打印的人体模型上以分析弯曲效果。天线的设计在较低和较高的所需谐振频带上均具有良好的--10dB带宽,表现出令人满意的性能。

著录项

  • 作者

    Das, Dipen Kumar.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Electrical engineering.;Electromagnetics.
  • 学位 M.S.
  • 年度 2017
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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