ENose Toolbox: application to array optimization including electronic measurement and noise effects for composite polymer chemiresistors

D. Wilson, L. Hansen
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Abstract

The impact of the choice of measurement circuit and of thermal noise on the resolving power (discrimination capability) of an array of composite polymer chemiresistors is presented. Semi-empirical models for the composite polymer resistors are used to simulate the behavior of these chemical sensors in a working array using a general purpose simulation tool (the ENose Toolbox). Results show that (a) measurement circuits that reduce or eliminate the effects of the baseline resistance have higher resolving power than those circuits that retain baseline information and (b) thermal noise impacts the resolving power of arrays that contain chemiresistors of lower sensitivity
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ENose工具箱:应用于阵列优化,包括复合聚合物化学电阻器的电子测量和噪声效应
研究了测量电路的选择和热噪声对复合聚合物化学电阻阵列分辨能力(识别能力)的影响。使用通用仿真工具(ENose Toolbox),使用复合聚合物电阻器的半经验模型来模拟这些化学传感器在工作阵列中的行为。结果表明:(a)减少或消除基线电阻影响的测量电路比保留基线信息的电路具有更高的分辨率;(b)热噪声影响包含灵敏度较低的化学电阻阵列的分辨率
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