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Health Management for PEM Fuel Cells Based on an Active Fault Tolerant Control Strategy

机译:基于主动容差控制策略的PEM燃料电池健康管理

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摘要

Health management can effectively extend the service life of proton exchange membrane fuel cells and reduce the maintenance cost. This paper proposes a health management method for the proton exchange membrane fuel cells based on an active fault tolerant control method. With the advantages of low cost and high speed, a stack voltage model is developed for the condition monitoring. The fast electrochemical impedance spectroscopy measurement is performed when the condition monitoring module detects faults. Then, the distribution of relaxation time is used to extract the characteristics of electrochemical impedance spectroscopy for fault diagnosis. Thereafter, based on the diagnosis results, the performance recovery strategies are incorporated to cope with the faults. This paper adopts three typical fuel cell faults, namely flooding, membrane drying, and air starvation, to demonstrate the effectiveness of the proposed health management. Experimental results show that the proposed health management can realize real-time health monitoring and rapid fault diagnosis, and achieve effective recovery of performance under faulty conditions, thereby significantly improving the reliability of the proton exchange membrane fuel cell system.
机译:健康管理可以有效地延长质子交换膜燃料电池的使用寿命,降低维护成本。本文提出了一种基于主动容耐控制方法的质子交换膜燃料电池的健康管理方法。随着成本低,速度低的优点,开发了堆栈电压模型用于条件监控。当条件监测模块检测到故障时,执行快速电化学阻抗光谱测量。然后,使用弛豫时间的分布来提取电化学阻抗光谱的特性进行故障诊断。此后,基于诊断结果,融合了性能回收策略以应对故障。本文采用三种典型的燃料电池故障,即洪水,膜干燥和空气饥饿,以证明拟议的健康管理的有效性。实验结果表明,拟议的健康管理可以实现实时健康监测和快速故障诊断,并在有缺陷的条件下实现性能的有效回收,从而显着提高质子交换膜燃料电池系统的可靠性。

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