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A Closed-Loop Water Management Methodology for PEM Fuel Cell System Based on Impedance Information Feedback

机译:基于阻抗信息反馈的PEM燃料电池系统闭环水管理方法

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Water management is an important issue for proton exchange membrane fuel cells (PEMFC). The research mainly focuses on the diagnosis and treatment of faults. However, faults harm PEMFC and cause its durability decay, whatever duration they last. This study designs a closed-loop water management system to control the water content in a reasonable range which can not only avoid the faults of hydration and flooding but also improve the performance and durability of PEMFC. The proposed system introduces the measurement methodology based on the phase of single-frequency impedance, which corresponds numerically well with the water content. Moreover, two preferred operating conditions, cathode air stoichiometry and stack temperature, are adopted to regulate the water content with a trade-off between the time cost and power loss. The open-loop characteristics of water content on the temperature and air stoichiometry are studied to design the corresponding control strategy. Findings suggest that air stoichiometry is suitable for large regulation requirements of water content, while the temperature is suitable to meet small demands. Finally, the proposed closed-loop water management system is validated by experiments in variable-load and constant-load with disturbance situations. The results indicate that the proposed system effectively controls the water content within a 3 deviation from the desired value.
机译:水管理是质子交换膜燃料电池(PEMFC)的一个重要问题。研究主要集中在故障的诊断和治疗上。然而,无论故障持续多长时间,故障都会损害 PEMFC 并导致其耐久性衰减。本研究设计了一种闭环水管理系统,将含水量控制在合理范围内,既避免了水化和淹水的故障,又提高了PEMFC的性能和耐久性。所提出的系统引入了基于单频阻抗相位的测量方法,该方法在数值上与含水量非常吻合。此外,采用阴极空气化学计量和烟囱温度两种优选操作条件来调节含水量,并在时间成本和功率损耗之间进行权衡。研究了含水量对温度和空气化学计量的开环特性,以设计相应的控制策略。结果表明,空气化学计量法适用于含水量的大调节要求,而温度适合满足小要求。最后,通过变负荷和恒负荷扰动情况下的实验验证了所提出的闭环水管理系统。结果表明,所提系统有效控制含水量与期望值偏差3%以内。

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