Multiband Antenna Design with Integrated AMC Surface and FSS Superstrate for Wireless Body Area Network Communications

IF 2.6 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
V. Rajavel, Dibyendu Ghoshal
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引用次数: 0

Abstract

The growing need for remote healthcare monitoring and personalized treatment has driven the evolution of Wireless Body Area Networks (WBAN). This paper presents a new multiband antenna design for WBAN, featuring a dual wideband antenna that operates from 2.22 to 3.52 GHz and 4.98–11.13 GHz. The design also includes an integrated 4 × 4 artificial magnetic conductor (AMC) surface and a 4 × 3 frequency selective surface (FSS) superstrate layer that works together to reduce back radiation and improve radiation performance. The AMC unit cell produces a quintuple zero-degree reflection phase response at 2.5 GHz, 4.8 GHz, 6.5 GHz, 9.1 GHz, and 11 GHz, and the FSS superstrate generates a multiband response of the transmission coefficient at 3.24 GHz, 6.68 GHz, and 9.25 GHz, behaving as a Double Negative material at their corresponding resonant frequency. The integrated antenna design measures 0.425λ0 ×  0.425λ0 × 0.17λ0 (λ0 at 2.45 GHz) and covers the most common wireless frequency bands, with an impedance bandwidth of 23.74% (2.19–2.78 GHz), 1.739% (3.99–4.06 GHz), and 72.46% (5.13–10.96 GHz). Furthermore, the integrated antenna showcases a peak gain of 11.98dBi at 7.5 GHz, a notable Front-to-Back Ratio of 25.15 dB at 8.2 GHz, and a minimal specific absorption rate (SAR) of 0.0142 W/kg at 9 GHz. These accomplishments resulted in a considerable 99.45% reduction in the overall average SAR values and achieved an 83% radiation efficiency. The effectiveness of the proposed multiband antenna design was evaluated by fabricating and testing an experimental prototype using a Vector Network Analyzer and Anechoic Chamber. Overall, the integrated AMC and FSS structures enable multiband resonance and improved radiation performance, making the presented antenna design a promising solution for future WBAN applications.

Abstract Image

用于无线体域网络通信的集成 AMC 表面和 FSS 叠层的多频带天线设计
对远程医疗监控和个性化治疗日益增长的需求推动了无线体域网(WBAN)的发展。本文介绍了一种用于 WBAN 的新型多频带天线设计,其特点是双宽带天线,工作频率为 2.22 至 3.52 GHz 和 4.98-11.13 GHz。该设计还包括一个集成的 4 × 4 人工磁导体(AMC)表面和一个 4 × 3 频率选择表面(FSS)叠层,它们共同作用以减少背辐射并提高辐射性能。AMC 单元在 2.5 GHz、4.8 GHz、6.5 GHz、9.1 GHz 和 11 GHz 频率下产生五倍零度反射相位响应,而 FSS 叠层在 3.24 GHz、6.68 GHz 和 9.25 GHz 频率下产生传输系数的多频带响应,在相应的谐振频率下表现为双负材料。集成天线设计的尺寸为 0.425λ0 × 0.425λ0 × 0.17λ0(λ0 在 2.45 GHz 处),覆盖了最常见的无线频段,阻抗带宽分别为 23.74%(2.19-2.78 GHz)、1.739%(3.99-4.06 GHz)和 72.46%(5.13-10.96 GHz)。此外,该集成天线在 7.5 GHz 时的峰值增益为 11.98dBi,在 8.2 GHz 时的前后比为 25.15 dB,在 9 GHz 时的最小比吸收率(SAR)为 0.0142 W/kg。这些成果使总体平均 SAR 值大幅降低了 99.45%,辐射效率达到 83%。通过使用矢量网络分析仪和消声室制作和测试实验原型,对所提出的多频带天线设计的有效性进行了评估。总体而言,集成的 AMC 和 FSS 结构实现了多频带共振并提高了辐射性能,使所提出的天线设计成为未来 WBAN 应用的一个有前途的解决方案。
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来源期刊
Arabian Journal for Science and Engineering
Arabian Journal for Science and Engineering MULTIDISCIPLINARY SCIENCES-
CiteScore
5.70
自引率
3.40%
发文量
993
期刊介绍: King Fahd University of Petroleum & Minerals (KFUPM) partnered with Springer to publish the Arabian Journal for Science and Engineering (AJSE). AJSE, which has been published by KFUPM since 1975, is a recognized national, regional and international journal that provides a great opportunity for the dissemination of research advances from the Kingdom of Saudi Arabia, MENA and the world.
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