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Fault Modelling and Test Development for Continuous Flow Microchemical Sensor Systems

机译:连续流动微型化学传感器系统故障建模与测试开发

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In this paper we consider modelling and fault modelling of continuous flow microfluidic chemical analysis systems for the purposes of system design optimisation and implementation of test strategies. We demonstrate how a continuous flow system can be modelled using a static model which merges the chemical, fluidic and optical domain, and is used to implement a test strategy based on decision tree analysis. Decision trees are then used to highlight strategic test points within the system and where to implement self-test hardware. We demonstrate this approach with an example microanalytical system for measurement of glutathione in seawater using fluorescence. The test strategy employs impedance spectroscopy and we demonstrate experimental evidence of its basic feasibility.
机译:本文考虑了用于系统设计优化和测试策略的目的的连续流量微流体化学分析系统的建模和故障建模。我们展示了如何使用静态模型来建模连续流动系统,该静态模型合并化学,流体和光学域,并用于基于决策树分析来实现测试策略。然后使用决策树突出系统内的战略测试点以及实现自检硬件的位置。我们用荧光展示了一种用于测量海水中谷胱甘肽的示例微映射系统的方法。测试策略采用阻抗光谱,我们展示了其基本可行性的实验证据。

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