可穿戴天线电路建模及不同馈源弯曲影响分析

IF 1.5 0 ENGINEERING, MULTIDISCIPLINARY
S. Mallavarapu, A. Lokam
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引用次数: 10

摘要

在过去十年中,可穿戴天线的应用经历了巨大的增长。天线是无线可穿戴设备中最重要、最关键的部件之一。它们需要特别设计,以便在穿在身上和脱在身上时都能工作。嵌入服装的可穿戴天线可用于无线通信,包括跟踪和导航,移动和可穿戴计算,以及公共安全和安保。为了方便用户使用,越来越多的人要求在衣服上或衣服里安装天线。确定可穿戴天线设计中使用的柔性基板的介电特性也是必不可少的。本文采用微带环形谐振器(MRR)来测定织物衬底的介电特性,然后采用最新设计的可穿戴天线及其在ISM频段频率下的弯曲效应。为了实现弯曲环境下天线几何结构内部的电势,设计了等效电学模型。然后观察在一定半径上弯曲时,不同馈电方式的弯曲对可穿戴天线参数的影响。通过测量天线在不同弯曲曲率下的回波损耗、增益和效率来检验所提出的可穿戴天线的鲁棒性。这将揭示设计可穿戴天线的各种思考,从不同的馈电机构和不同的材料,并举例说明天线对人体动态力矩的影响。该可穿戴天线在变形环境下的性能也可以接受,实测结果与仿真结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circuit Modeling and Analysis of Wearable Antennas on the Effect of Bending for Various Feeds
The promising utilization of wearable antennas has experienced gigantic growth during the last decade. An antenna is one of the most significant and crucial components of wireless wearable devices. They need to be particularly designed to work while worn on and off the body. The wearable antenna embedded into clothing finds its use in wireless communications including tracking and navigation, mobile and wearable computing, and public safety and security. For user accessibility, there is a growing requirement for incorporating antennas on or in clothing. Determining the dielectric characteristics of the flexible substrates utilized in the design of the wearable antenna is also essential. In this paper, a Microstrip Ring Resonator (MRR) is employed to determine the dielectric properties of fabric substrates followed by state-of-the-art designs of wearable antennas and their bending effects at ISM band frequencies. An electrical equivalent model is designed to realize the potentials inside the geometry of an antenna under bending environment. This is followed by observing the effect of bending for different feeding methods on the wearable antenna's parameters when bending on a certain radius. The robustness of the proposed wearable antenna is examined by measuring the antenna under various bending curvatures for return loss, gain, and efficiencies. This will disclose the various contemplations for designing a wearable antenna from different feeding mechanisms with different materials and exemplifying the antenna's outcomes to dynamic moments of the human body. The performance of the proposed wearable antenna is acceptable even in a deformation environment, and there is a good agreement between the measured and the simulation results.
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来源期刊
Engineering, Technology & Applied Science Research
Engineering, Technology & Applied Science Research ENGINEERING, MULTIDISCIPLINARY-
CiteScore
3.00
自引率
46.70%
发文量
222
审稿时长
11 weeks
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