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Multiband wearable textile antenna for I.S.M body center communication systems

机译:用于I.S.M人体中心通信系统的多频带可穿戴式纺织天线

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摘要

Wearable antenna utilization trend has been observed on raise due to its application for defense, medical and wireless communication devices. Most of portable electronic devices require multi-band compact antenna for operating for data and voice service. This paper presents the current state of art of the wearable antenna development, focusing on design and analysis issues. The investigation is focused on experimental characterization of multi-band miniaturized patch antenna using different electro textile substrate. The miniaturization is achieved by T-shape slot in the patch antenna and by using technique of mitering. By using technique of mitering extra part of metal is removed at the corner of the radiating patch resulting in reduction of capacitance and thus reducing the reflection coefficient as current null at the corner are removed. The antennas operating frequency consist of the industrial, scientific and medical (ISM) band from 2.45 GHz to 6 GHz Band of communication. The antenna performance was investigated by analyzing its reflection coefficient, VSWR, impendence bandwidth, and Specific Absorption Rate (SAR) for human blood. The simulation results show that there are various effects on bandwidth and frequency of operation as the structure of antenna is varied due to bending of radiating patch and flexible substrate.
机译:由于可穿戴天线在国防,医疗和无线通信设备中的应用,人们发现其可穿戴天线的使用率呈上升趋势。大多数便携式电子设备需要多频段紧凑型天线才能进行数据和语音服务。本文介绍了可穿戴天线的最新技术发展,重点是设计和分析问题。该研究集中于使用不同的电子纺织品基底的多频带微型贴片天线的实验表征。通过贴片天线中的T形缝隙并使用斜接技术可以实现小型化。通过使用斜接技术,在辐射贴片的拐角处去除了多余的金属,从而导致电容减小,并且因此当去除了拐角处的零电流时,减小了反射系数。天线的工作频率包括从2.45 GHz到6 GHz通信频段的工业,科学和医学(ISM)频段。通过分析天线的反射系数,VSWR,阻抗带宽和对人体血液的比吸收率(SAR),研究了天线的性能。仿真结果表明,随着辐射贴片和柔性基板的弯曲,天线的结构发生变化,从而对带宽和工作频率产生各种影响。

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