Al-Gburi Ahmed Jamal Abdullah, Zakaria Zahriladha, Abd Rahman Norhanani, Alam Syah, Said Maizatul Alice Meor
Centre of Telecommunication Research & Innovation (CeTRI), Fakulti Kejuruteraan Elektronik dan Kejuruteraan Komputer, Universiti Teknikal Malaysia Melaka, Durian Tungal 76100, Melaka, Malaysia.
Department of Electrical Engineering, Politeknik Port Dickson (PPD), Port Dickson 71250, Negeri Sembilan, Malaysia.
Micromachines (Basel). 2023 Feb 3;14(2):384. doi: 10.3390/mi14020384.
A compact and low-profile curve-feed complementary split-ring resonator (CSRR) microwave sensor for solid material detection is presented in this article. The curve-feed CSRR sensor was developed based on the CSRR configuration with triple rings (TRs) designed together, utilizing a high-frequency structure simulator (HFSS) microwave studio. The designed curve-feed CSRR sensor resonates at 2.5 GHz, performs in transmission mode, and senses shift in frequency. Four varieties of the sample under tests (SUTs) were simulated and measured. These SUTs are Air (without SUT), Roger 5880, Roger 4350, FR4, and detailed sensitivity analysis is being performed for the resonant band at 2.5 GHz. The finalized CSRR curve-feed sensor was integrated with defective ground structure (DGS) to deliver high-performance characteristics in microstrip circuits, which leads to a high Q-factor magnitude. The presented curve-feed sensor has a Q-factor of 520 at 2.5 GHz, with high sensitivity of about 1.072. The relationship between loss tangent, permittivity, and Q-factor at the resonant frequency has been compared and discussed. These disseminated outcomes make the suggested sensor ideal for characterizing solid materials.
本文提出了一种用于固体材料检测的紧凑型、低剖面曲线馈电互补分裂环谐振器(CSRR)微波传感器。曲线馈电CSRR传感器是基于带有三环(TRs)的CSRR结构共同设计的,利用高频结构模拟器(HFSS)微波工作室开发而成。所设计的曲线馈电CSRR传感器在2.5 GHz处谐振,工作在传输模式,并能感知频率偏移。对四种测试样品(SUTs)进行了模拟和测量。这些SUTs分别是空气(无样品)、Roger 5880、Roger 4350、FR4,并且正在对2.5 GHz谐振带进行详细的灵敏度分析。最终的CSRR曲线馈电传感器与缺陷接地结构(DGS)集成,以在微带电路中实现高性能特性,从而得到高Q值。所提出的曲线馈电传感器在2.5 GHz处的Q值为520,灵敏度约为1.072。比较并讨论了谐振频率下损耗角正切、介电常数和Q值之间的关系。这些研究成果使得所建议的传感器成为表征固体材料的理想选择。