Optimization of CSRR based RF sensor for detecting ethanol in petrol

Kunal Wadhwani, Sheena Hussaini, Syed Azeemuddin
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Abstract

This paper reports solvent based optimization of radio frequency (RF) sensors for detecting ethanol mixtures in petrol using complementary split ring resonators (CSRR). The optimization is carried out using binary particle swarm optimization (BPSO) in presence of mask by placing the sample under test (SUT) above the highly sensitive CSRR region. The motivation behind this work has been to detect miniscule changes of ethanol in the dielectric constant of the petrol. The RF sensors designed using BPSO enables faster convergence providing more efficient designs offering enhanced sensitivity at a normalized frequency of 2.66% and 1.81% when compared to 1.02% of conventional CSRR as presented in the simulation results.
基于CSRR的汽油乙醇射频传感器的优化设计
本文报道了利用互补裂环谐振器(CSRR)对汽油中乙醇混合物的射频(RF)传感器进行溶剂优化。通过将待测样品置于高敏感的CSRR区域之上,利用掩模存在下的二元粒子群优化(BPSO)进行优化。这项工作背后的动机是检测汽油介电常数中乙醇的微小变化。使用BPSO设计的射频传感器能够更快地收敛,提供更高效的设计,并在2.66%和1.81%的归一化频率下提高灵敏度,而传统CSRR的归一化频率为1.02%,如仿真结果所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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