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首页> 外文期刊>Proceedings of the ASME Advanced Energy Systems Division >EXPERIMENTAL EVALUATION OF A CONTROL STRATEGY FOR REAL - TIME OPTIMIZATION OF LOW TEMPERATURE PEM FUEL CELL STACK
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EXPERIMENTAL EVALUATION OF A CONTROL STRATEGY FOR REAL - TIME OPTIMIZATION OF LOW TEMPERATURE PEM FUEL CELL STACK

机译:低温PEM燃料电池堆实时优化控制策略的实验评价。

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摘要

A robust control strategy which ensures optimum performance is crucial to proton exchange membrane (PEM) fuel cell development. In a PEM fuel cell stack, the primary control variables are the reactant's stochiometric ratio, membrane's relative humidity and operating pressure of the anode and cathode. In this study, a 5 kW (25-cell) PEM fuel cell stack is experimentally evaluated under various operating conditions. Using the extensive experimental data of voltage-current characteristics, a feed forward control strategy based on a 3D surface map of cathode pressure, current density and membrane humidity at different operating voltages is developed. The effectiveness of the feed forward control strategy is tested on the Green-light testing facility. To reduce the dependence on predetermined system parameters, real-time optimization based on extremum seeking algorithm is proposed to control the air flow rate into the cathode of the PEM fuel cell stack. The quantitative results obtained from the experiments show good potential towards achieving effective control of PEM fuel cell stack.
机译:确保最佳性能的稳健控制策略对于质子交换膜(PEM)燃料电池的开发至关重要。在PEM燃料电池堆中,主要控制变量是反应物的化学计量比,膜的相对湿度以及阳极和阴极的工作压力。在这项研究中,在各种运行条件下对5 kW(25电池)PEM燃料电池堆进行了实验评估。利用大量的电压-电流特性实验数据,开发了基于3D阴极压力,电流密度和膜湿度在不同工作电压下的3D表面图的前馈控制策略。前馈控制策略的有效性在Green-light测试设施上进行了测试。为了减少对预定系统参数的依赖,提出了基于极值搜索算法的实时优化,以控制进入PEM燃料电池堆阴极的空气流量。从实验中获得的定量结果显示出实现有效控制PEM燃料电池堆的良好潜力。

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