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An evaluation of an olfactory sensor and recognition system using metal-oxide semiconductor gas sensor with variable heater controller

机译:使用带有可变加热器控制器的金属氧化物半导体气体传感器对嗅觉传感器和识别系统的评估

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AbstractAn artificial olfactory, which is called an electronic nose system (e-nose), is studied for realizing new human–machine interface. The system consists of sensor unit and a signal processing unit. There are some types of sensors for the sensor unit, metal oxide semiconductor gas sensors (MOGS) and quartz crystal microbalance gas sensors are useful in our study. Our system in this paper has MOGS. Many of MOGS utilize an effect of an oxidation–reduction reaction on the surface of the sensors. One of the features of the sensor, the character of the sensor is changed by temperature of the sensors. In this paper, we build a extend output sensor unit using this feature, and show experimental result of classification applying multilayer perceptron. In the experiment, we choose soy sauce as classification targets because we are considering applying the system for management of cooked foods.
机译: Abstract 人工嗅觉,被称为电子鼻系统(电子鼻)为实现新的人机界面而进行了研究。该系统由传感器单元和信号处理单元组成。传感器单元有几种类型的传感器,金属氧化物半导体气体传感器(MOGS)和石英晶体微天平气体传感器在我们的研究中很有用。本文中的系统具有MOGS。许多MOGS利用传感器表面的氧化还原反应效应。传感器的特征之一是传感器的特性随传感器的温度而变化。在本文中,我们利用此功能构建了一个扩展输出传感器单元,并展示了使用多层感知器进行分类的实验结果。在实验中,我们选择酱油作为分类目标,因为我们正在考虑将系统用于熟食管理。

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