一种适用于超宽带体域网的带缺陷接地平面的优化馈电六角天线

Q3 Engineering
S. Mahapatra, M. Mohanty
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引用次数: 1

摘要

体域网络通过特定频率的传感器或微带天线,为监控、认证和安全提供了便利。本研究工作的目的是提出一种简化的方法,通过使用ANSYS HFSS最小化反射系数,使用进化算法搜索边缘进给的嵌入物的最佳长度。最佳的插入长度使得天线具有更好的辐射效率和更宽的带宽。天线结构为70x70x1.6 mm3,采用改良接地。该天线的用途是在超宽带中进行通信,分别在5.4、8.1和9.8 GHz频带中工作。测得的谐振带宽分别为1.02、0.28和0.12GHz。同时,在自由空间中可实现的增益分别为3.18、7.81和19.95dB。由于天线是可佩戴型的,因此每个频段的前后比分别为2.31、7.01和13.91。制作的天线结果与仿真结果一致。当天线放置在人体组织模型上时,观察到谐振频率下的比吸收率分别为0.3、0.56和0.24W/kg。该天线适用于ISM频段的体上通信,以及体域网络中的高数据速率体外通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Optimized Feed Hexagonal Antenna with Defective Ground Plane for UWB Body Area Network Application
Body area network has facilitated monitoring, authentication and security through sensors or microstrip antenna with specified frequency. The purpose of this research work is to propose a simplified way to search for an optimal length of the inset for edge feeding using the Evolutionary Algorithm search by minimizing the reflection coefficient using ANSYS HFSS. The optimal inset length resulted in an antenna with better radiation efficiency and wider bandwidth. The antenna structure is 70x70x1.6 mm3, with a modified ground. The purpose of this antenna is communication in Ultra-wideband and works in 5.4, 8.1, and 9.8 GHz bands respectively. The resonant bandwidth measured are 1.02, 0.28, 0.12 GHz, respectively. Simultaneously the achievable gains are 3.18, 7.81, and 19.95 dB, respectively in free space. As the antenna is of wearable type, the front-to-back ratio evaluated for each band is 2.31, 7.01, and 13.91 respectively. The results of the fabricated antenna agree with the simulated results. The specific absorption rates at resonant frequencies were observed to be 0.3, 0.56 and 0.24 W/kg respectively when antenna is placed on a human tissue model. The antenna is useful for on-body communication at ISM band, and high data rate off-body communication in body area networks.
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来源期刊
Instrumentation Mesure Metrologie
Instrumentation Mesure Metrologie Engineering-Engineering (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
25
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