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Electrical circuit analysis of CO poisoning in high temperature PEM fuel cells for rapid fault diagnostics

机译:高温PEM燃料电池中CO中毒的电路分析,用于快速故障诊断

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High Temperature PEM fuel cells are able to withstand a substantial amount of CO poisoning while still maintaining stable output. High concentrations of CO will however degrade performance and can lead to instability. This paper presents a detailed study on the impact of CO poisoning on the performance of High Temperature PEM fuel cells. A dedicated test setup was constructed to perform both steady state and dynamic analysis on the fuel cell under a wide range of operating conditions and variations in CO content. The drop in performance captured in the polarization curves is modeled using a simple circuit model with a dedicated fault element. The captured impedance spectra from the electrochemical impedance spectroscopy (EIS) tests provide insight to the changes in the electrochemical circuit parameters during CO poisoning that can be used to track the fuel cell state of health. The results from this study will allow for the development of a rapid diagnostic control system that can be implemented in the power conditioning unit of the fuel cell.
机译:高温PEM燃料电池能够承受大量的CO中毒,同时仍保持稳定的输出。但是,高浓度的CO将降低性能并导致不稳定。本文对CO中毒对高温PEM燃料电池性能的影响进行了详细研究。构建了专用的测试装置,以在各种运行条件和CO含量变化的情况下对燃料电池进行稳态和动态分析。使用带有专用故障元件的简单电路模型对极化曲线中捕获的性能下降进行建模。从电化学阻抗谱(EIS)测试中捕获的阻抗谱可洞悉CO中毒期间电化学电路参数的变化,这些变化可用于跟踪燃料电池的健康状态。这项研究的结果将有助于开发可以在燃料电池的功率调节单元中实施的快速诊断控制系统。

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