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Long term stability of metal oxide-based gas sensors for e-nose environmental applications : an overview

机译:电子鼻环境应用中基于金属氧化物的气体传感器的长期稳定性:概述

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摘要

The e-nose technology has enormous potentialities for in site monitoring of off-odours. However a number of limitations are associated with the properties of chemical sensors, the signal processing performances and the real operating conditions of the environmental field. The field experience of the research group included testing of a large amount of sensors in different sensor technologies and among those the metal oxide-based gas sensors (Figaro type) are the best gas sensors for long term application, as stated during more than 1 year of field testing. To be usable for the off-odours field measurement, the e-nose has to deal with the lack of long term stability of these sensors. The drift and the sensors replacement have to be considered. In order to appraise the time evolution of the sensors and the effect on the results of an electronic nose, experimentation has been performed during more than 3 years on two identical sensor arrays. The two arrays contain the same six Figaro sensors and are in the same sensor chamber of the e-nose system. Both arrays have worked continuously, without break. This paper presents the drift of some TGS sensors for 7 years as well as the difference in the temporal behaviour of identical sensors and the consequence on the e-nose results after the sensor replacement in the sensors array. A correction of the drift and of the replacement effect is applied and the classification results are exposed, with and without correction.
机译:电子鼻技术具有现场监测异味的巨大潜力。但是,化学传感器的特性,信号处理性能和环境领域的实际操作条件有许多限制。该研究小组的现场经验包括对各种传感器技术中的大量传感器进行测试,其中包括基于金属氧化物的气体传感器(Figaro型)是长期应用的最佳气体传感器,如在一年多的时间中所述现场测试。为了可用于异味现场测量,电子鼻必须解决这些传感器长期缺乏稳定性的问题。必须考虑漂移和传感器更换。为了评估传感器的时间演变以及对电子鼻结果的影响,已经在3年多的时间里对两个相同的传感器阵列进行了实验。这两个阵列包含相同的六个Figaro传感器,并且位于电子鼻系统的同一传感器腔室内。两个阵列都连续工作,没有间断。本文介绍了一些TGS传感器漂移了7年,以及相同传感器的时间行为的差异,以及更换传感器阵列中的传感器后电子鼻结果的后果。对漂移和替换效果进行校正,并在有或没有校正的情况下显示分类结果。

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