基于可编程片上系统的电子鼻化学传感器的电模型表征

Joao J. M. Santos, S. Palma, C. Esteves, Hugo Gamboa, João Pedro Oliveira, A. C. Roque
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引用次数: 0

摘要

许多疾病的诊断涉及侵入性检测方法,这对患者来说既痛苦又有压力。在过去的几十年里,电子鼻(E-Nose)技术的不断发展使其成为非侵入性疾病检测方法的伟大候选人。这种设备通过一组传感器模拟人类嗅觉系统,产生与疾病有关的信号。最近,我们小组开发的一类低成本和创新的离子凝胶传感器证明了它们在电子鼻系统中的完全适用性,为该领域开辟了一条新的有前途的途径。然而,这种传感器的运行需要一个背景校准阶段,该阶段依赖于相应电传感器模型的正确表征和参数化。本文提出了一种基于传感器在几种湿度条件下的一组频率响应采集的模型表征方法。为了获得一种能够获得准确结果的灵活采集工具,提出了一种模拟前端(AFE)电路与交叉数字电极(IDE)传感器接口。这种AFE电路完全使用可编程的片上系统(PSoC)实现,有助于减少系统尺寸和成本。最后,给出了电学模型与系统数据的比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An electrical model characterization of an electronic nose chemical sensor using a programmable system-on-a-chip based AFE
The diagnosis of many diseases involves invasive detection methods, which are both painful and stressing for patients. In the last decades, the ever-growing development in electronic nose (E-Nose) technology made them great candidates for non-invasive disease detection methods. Such devices mimic the human olfactory system through a set of sensors which produce signals that can be associated with diseases. Recently, a class of low-cost and innovative ionogel sensors, developed by our group demonstrated their full applicability in E-Nose systems, opening a new and promising approach to the field. However, the operation of such sensor needs a background calibration phase which relies on the correct characterization and parameterization of the corresponding electrical sensor model.This paper proposes a model characterization methodology based on a set of frequency responses acquisitions of the sensor, under several humidity conditions. To obtain a flexible acquisition tool capable of acquiring accurate results, an analog front-end (AFE) circuit to interface with the interdigitated electrode (IDE) sensors is presented. Such AFE circuit is fully implemented using a programmable system-on-a-chip (PSoC), helping to reduce system size and cost. Lastly, a comparison between the electrical model and data acquired with the proposed system is presented.
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