基于α-Fe2O3传感材料的车载驾驶员呼气乙醇集成系统的研制

R. Di Chio, Monica Galtieri, N. Donato, G. Neri
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引用次数: 2

摘要

酗酒是致命车祸的主要原因(约占欧洲所有道路死亡人数的25%)。因此,大规模实施旨在实现车载驾驶员呼气乙醇检测的系统的需求很大。因此,我们致力于设计一种廉价且可靠的呼气酒精传感器,用于高级驾驶辅助系统(ADAS)。该传感器开发的主要挑战与呼吸成分的复杂性及其高湿度含量有关,再加上到达传感器的呼吸的高度稀释。在这项工作中,开发了一种简单的α-Fe2O3薄膜传感器,并在实验室测试中得到了验证。测试还通过将乙醇传感器放置在汽车上转向柱的外壳中来模拟真实的驾驶条件。利用配备有开发的乙醇传感器和湿度、温度和二氧化碳传感器的阵列,可以区分驾驶员饮酒前后的呼吸信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of an Integrated In-Vehicle Driver Breath Ethanol System Based on α-Fe2O3 Sensing Material
Alcohol abuse is the dominant cause of fatal car accidents (about 25% of all road deaths in Europe). The large-scale implementation of systems aimed at the realization of in-vehicle driver breath ethanol detection is therefore in high demand. For this reason, we devoted our attention to the design of an inexpensive and reliable breath alcohol sensor for use in an Advanced Driver Assistance System (ADAS). The main challenge in the development of this sensor is related to the complexity of breath composition and its high humidity content, coupled with the high dilution of breath reaching the sensor. In this work, a simple α-Fe2O3 film-based sensor was developed and validated in laboratory tests. Tests were also performed by placing the ethanol sensor within the casing of the upper steering column of a car to simulate real driving conditions. Using an array provided with the developed ethanol sensor and humidity, temperature and CO2 sensors, it was possible to differentiate the signal of a driver’s breath before and after alcohol consumption.
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