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具有高轴比带宽的小型化植入式圆极化天线。

Miniaturised implantable circular polarized antenna with a high ARBW.

作者信息

Nehra Rajiv Kumar, Dureja Ajay, Rathore Rajkumar Singh, Yang Tiansheng, Wang Lu

机构信息

Dept. of Electronics and Communication Engineering, Bharati Vidyapeeth's College of Engineering, New Delhi, India.

Dept. of Information Technology, Bharati Vidyapeeth's College of Engineering, New Delhi, India.

出版信息

PLoS One. 2025 May 7;20(5):e0321670. doi: 10.1371/journal.pone.0321670. eCollection 2025.

Abstract

For biological applications, this communication uses an implanted antenna loaded with metamaterial and a sorting pin. The suggested antenna operates at 2.44 GHz in the ISM band. The first antenna's resonant frequency is lowered from 2.53 GHz to 2.46 GHz by applying a sorting pin. This causes the antenna to become circularly polarized and have an ARBW of 580 MHz (2.15 GHz - 2.73 GHz). Strong CP behavior with an ARBW of 830 MHz from 2.01 GHz to 2.84 GHz in the ISM band is produced by incorporation of an H-shaped metamaterial on the antenna's superstrate. Additionally, the reasonable value of the specific absorption rate improved from 960.5 to 952.1. Highlights of the suggested antenna include its miniature size (10.67 mm3), strong CP properties, the significant value of SAR 952.1 W/KG, and unslotted ground plane to detract from designing labyrinthine backscattering radiation. After building the recommended antenna, experiments are conducted using a skin-mimicking gel solution that approximates the electrical characteristics of human skin tissues at 2.44 GHz. In the ISM band, actual and simulated impedance bandwidths of 90 MHz and 110 MHz are acquired, respectively. Together with parametric analysis, simulation and measurement results are consistent.

摘要

对于生物应用,本通信采用了一种植入式天线,该天线加载了超材料和一个分选销。所建议的天线在ISM频段的2.44 GHz下工作。通过应用分选销,第一天线的谐振频率从2.53 GHz降低到2.46 GHz。这使得天线变为圆极化,并且具有580 MHz(2.15 GHz - 2.73 GHz)的轴比带宽(ARBW)。通过在天线的覆层上并入一个H形超材料,在ISM频段产生了在2.01 GHz至2.84 GHz范围内具有830 MHz轴比带宽的强圆极化行为。此外,比吸收率的合理值从960.5提高到了952.1。所建议天线的亮点包括其微型尺寸(10.67 mm³)、强圆极化特性、比吸收率952.1 W/KG的显著值以及无开槽接地平面以避免设计迷宫式反向散射辐射。构建所推荐的天线后,使用一种模拟人体皮肤组织在2.44 GHz时电学特性的仿皮凝胶溶液进行实验。在ISM频段,分别获得了90 MHz的实际阻抗带宽和110 MHz的模拟阻抗带宽。连同参数分析,模拟和测量结果是一致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bae/12057919/e0b9ee70b0da/pone.0321670.g009.jpg

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