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Dynamic Calibration of Electrochemical Sensor for Accelerated Analyte Quantification

机译:电化学传感器的动态校准,用于加速分析物定量

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摘要

The conventional sensor calibration aims at mathematically relating the steady-state sensor responses to the target analyte concentrations to realize environment monitoring. However, commonly used chemical sensors usually require a relatively long time (say, minutes) to reach a steady state, and exhibit delayed responses when the analyte concentration changes quickly over time. To reduce the lag time and achieve real-time monitoring, this paper takes a statistical modeling approach. Based on the experimental data collected following the proposed design of experiments strategies, transfer function models are estimated to calibrate the dynamic behavior of a sensor. Such dynamic calibration models enable the use of transient sensor signals (as opposed to the steady-state responses) to track the rapid change in the target analyte concentration. In this paper, the dynamic modeling method is employed to calibrate a high-temperature electrochemical carbon monoxide (CO) sensor, and the empirical results have shown that the proposed method can reduce the time lag of a sensor by an order of magnitude (from minutes to seconds) compared with the steady-state calibration.
机译:传统的传感器校准旨在将稳态传感器响应与目标分析物浓度进行数学关联,以实现环境监控。但是,通常使用的化学传感器通常需要相对较长的时间(例如几分钟)才能达到稳定状态,并且当分析物浓度随时间快速变化时,响应延迟。为了减少滞后时间并实现实时监控,本文采用统计建模方法。根据遵循拟议的实验策略设计收集的实验数据,估计传递函数模型以校准传感器的动态行为。这种动态校准模型可以使用瞬态传感器信号(与稳态响应相反)来跟踪目标分析物浓度的快速变化。本文采用动态建模方法对高温电化学一氧化碳(CO)传感器进行标定,实验结果表明,该方法可以将传感器的时滞减少一个数量级(从几分钟到几分钟)。到秒)与稳态校准相比。

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