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Optimization of TiO2 and PMAPTAC Concentrations of a Chemical Humidity Sensing Mechanism

机译:TiO2和PMAPTAC浓度优化的化学湿敏机理

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摘要

This work aims to achieve an optimization of the TiO2 and PMAPTAC concentrations in a chemical resistive-type humidity sensing mechanism (RHSM). Our idea is based primarily on the modeling of the sensing mechanism. This model takes into account the parameters of non-linearity, hysteresis, temperature, frequency, substrate type. Furthermore, we investigated the TiO2 and PMAPTAC effects concentrations on the humidity sensing properties in our model. Secondly, we used the Matlab environment to create a database for an ideal model for the sensing mechanism, where the response of this ideal model is linear for any value of the above parameters. We have done the training to create an analytical model for the sensing mechanism (SM) and the ideal model (IM). After that, the SM and IM models are established on PSPICE simulator, where the output of the first is identical to the output of the RHSM used and the output of the last is the ideal response. Finally a “DIF bloc” was realized to make the difference between the SM output and the IM output, where this difference represents the linearity error, we take the minimum error, to identify the optimal TiO2 and PMAPTAC concentrations. However, a compromise between concentrations, humidity and temperature must be performed. The simulation results show that in low humidity and at temperature more than 25 °C, sample 1 is the best (in alumina substrate). However, the sample 9 represents the best sensor (in PET substrate) predominately for the lowest humidity and temperature.
机译:这项工作旨在在化学电阻式湿度感测机制(RHSM)中实现TiO2和PMAPTAC浓度的优化。我们的想法主要基于传感机制的建模。该模型考虑了非线性,磁滞,温度,频率,基板类型等参数。此外,我们在模型中研究了TiO2和PMAPTAC对湿度感测特性的影响浓度。其次,我们使用Matlab环境为感测机制的理想模型创建数据库,该理想模型的响应对于上述参数的任何值都是线性的。我们已经完成了训练,以创建用于感应机制(SM)和理想模型(IM)的分析模型。之后,在PSPICE模拟器上建立SM和IM模型,其中第一个模型的输出与所用RHSM的输出相同,而最后一个模型的输出则是理想的响应。最后,实现了“ DIF块”,以使SM输出和IM输出之间存在差异,该差异代表线性误差,我们采用最小误差,以识别最佳的TiO2和PMAPTAC浓度。但是,必须在浓度,湿度和温度之间进行折衷。模拟结果表明,在低湿度和高于25°C的温度下,样品1是最佳的(在氧化铝基材中)。然而,样品9代表最低湿度和温度的最佳传感器(在PET基板中)。

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