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基于带有支线滤波器的对称分裂环谐振器的微波生物传感器用于治疗物品检测。

Microwave bio-sensor based on symmetrical split ring resonator with spurline filters for therapeutic goods detection.

作者信息

Alahnomi Rammah A, Zakaria Z, Ruslan E, Ab Rashid S R, Mohd Bahar Amyrul Azuan, Shaaban Azizah

机构信息

Center for Telecommunication Research and Innovation (CeTRI), Universiti Teknikal Malaysia Melaka (UTeM), Hang Tuah Jaya, Durian Tunggal, Melaka, Malaysia.

Faculty of Technology Engineering (FTK), Universiti Teknikal Malaysia Melaka (UTeM), Hang Tuah Jaya, Durian Tunggal, Melaka, Malaysia.

出版信息

PLoS One. 2017 Sep 21;12(9):e0185122. doi: 10.1371/journal.pone.0185122. eCollection 2017.

Abstract

A novel symmetrical split ring resonator (SSRR) based microwave sensor with spurline filters for detecting and characterizing the properties of solid materials has been developed. Due to the weak perturbation in the interaction of material under test (MUT) and planar microwave sensor, spurline filters were embedded to the SSRR microwave sensor which effectively enhanced Q-factor with suppressing the undesired harmonic frequency. The spurline filter structures force the presented sensor to resonate at a fundamental frequency of 2.2 GHz with the capabilities of suppressing rejected harmonic frequency and miniaturization in circuit size. A wide bandwidth rejection is achieved by using double spurlines filters with high Q-factor achievement (up to 652.94) compared to single spurline filter. The new SSRR sensor with spurline filters displayed desired properties such as high sensitivity, accuracy, and performance with a 1.3% typical percentage error in the measurement results. Furthermore, the sensor has been successfully applied for detecting and characterizing solid materials (such as Roger 5880, Roger 4350, and FR4) and evidently demonstrated that it can suppress the harmonic frequency effectively. This novel design with harmonic suppression is useful for various applications such as food industry (meat, fruit, vegetables), biological medicine (derived from proteins and other substances produced by the body), and Therapeutic goods (antiseptics, vitamins, anti-psychotics, and other medicines).

摘要

一种基于新型对称分裂环谐振器(SSRR)的带有支线滤波器的微波传感器已被开发出来,用于检测和表征固体材料的特性。由于被测材料(MUT)与平面微波传感器相互作用中的微弱扰动,支线滤波器被嵌入到SSRR微波传感器中,这在抑制不需要的谐波频率的同时有效地提高了品质因数。支线滤波器结构使所呈现的传感器在2.2GHz的基频下谐振,具备抑制谐波频率和减小电路尺寸的能力。与单支线滤波器相比,使用具有高品质因数(高达652.94)的双支线滤波器可实现宽带宽抑制。带有支线滤波器的新型SSRR传感器展现出了诸如高灵敏度、高精度和高性能等理想特性,测量结果的典型百分比误差为1.3%。此外,该传感器已成功应用于检测和表征固体材料(如Roger 5880、Roger 4350和FR4),并明显证明它能有效抑制谐波频率。这种具有谐波抑制功能的新颖设计对食品工业(肉类、水果、蔬菜)、生物医药(源自蛋白质和身体产生的其他物质)以及治疗用品(防腐剂、维生素、抗精神病药物和其他药物)等各种应用都很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cda0/5608324/3dc7143c2fee/pone.0185122.g001.jpg

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