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Source Separation Using Sensor’s Frequency Response: Theory and Practice on Carbon Nanotubes Sensors

机译:利用传感器的频率响应进行信号源分离:碳纳米管传感器的理论与实践

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摘要

Nowadays, there is an increased demand in integrated sensors for electronic devices. Multi-functional sensors provide the same amount of data using fewer sensors. Carbon nanotubes are non-selectively sensitive to temperature, gas and strain. Thus, carbon nanotubes are perfect candidates to design multi-functional sensors. In our study, we are interested in a dual humidity-temperature sensor. Here, we present a novel method to differentiate at least two sources using the sensor’s frequency responses based on multiwall carbon nanotubes sensors. The experimental results demonstrate that there are temperature- or moisture-invariant frequencies of the impedance magnitude, and their values depend on the sensor’s geometry. The proposed measurement model shows that source-invariant frequencies of the phase can be also determined. In addition, the source separation method is generalized to other materials or sources enabling multi-functional sensors for environment monitoring.
机译:如今,对于电子设备的集成传感器的需求不断增长。多功能传感器使用较少的传感器即可提供相同数量的数据。碳纳米管对温度,气体和应变非选择性敏感。因此,碳纳米管是设计多功能传感器的理想选择。在我们的研究中,我们对双湿度温度传感器感兴趣。在这里,我们提出了一种基于多壁碳纳米管传感器的,利用传感器的频率响应来区分至少两个源的新颖方法。实验结果表明,存在阻抗大小的温度或湿度不变频率,它们的值取决于传感器的几何形状。所提出的测量模型表明,也可以确定相位的源不变频率。另外,源分离方法被推广到其他材料或源,从而启用用于环境监测的多功能传感器。

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