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Extracting discriminative information from the Pade-Z-transformed responses of a temperature-modulated chemoresistive sensor for gas recognition

机译:从温度调节的化学电阻传感器的Pade-Z转换响应中提取判别信息以进行气体识别

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摘要

The response patterns of a temperature-modulated chemoresistive gas sensor were transformed to multi-exponential functions which facilitated the extraction of their discriminative features for gas diagnosis. The patterns were generated for air contaminated with different concentrations ofvarious volatile organic compounds by applying a staircase heating voltage waveform to the microheater of a tin oxide-based sensor that modulated its operating temperature in the 50-400℃ range. Pade-Z transform was utilized for the transformation, and a novel heuristic procedure facilitated the extraction of the components of the feature vectors from the transformed data. These vectors were classified by the available techniques. The method differentiated the patterns generated for methanol, ethanol, 1-propanol, 1-butanol, and acetone contaminations in the wide concentration range examined. The method was also used to separately estimate the amount of the discriminative information in various steady state and transient response features; the results are anticipated to help design more elaborate temperature-modulated sensors for gas diagnosis.
机译:温度调制的化学电阻式气体传感器的响应模式被转换为多指数函数,这有助于提取用于气体诊断的判别特征。通过将阶梯加热电压波形施加到基于氧化锡的传感器的微型加热器上,以调制其工作温度在50-400℃范围内,从而生成针对不同浓度的各种挥发性有机化合物污染的空气的模式。 Pade-Z变换用于变换,并且一种新颖的启发式过程有助于从变换后的数据中提取特征向量的分量。这些载体通过可用技术分类。该方法区分了在宽泛的浓度范围内甲醇,乙醇,1-丙醇,1-丁醇和丙酮污染产生的模式。该方法还用于分别估计各种稳态和瞬态响应特征下的判别信息量。预期结果将有助于设计用于气体诊断的更精密的温度调制传感器。

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