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Control Algorithm Based on an Experimental Approach for PEM Fuel Cell Systems Efficiency Optimization

机译:基于PEM燃料电池系统效率优化实验方法的控制算法

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Nowadays, PEM fuel cells are considered as one of the most promising electric energy production technology using hydrogen. For this reason, tracking the efficiency of the PEM fuel cell system is an important research topic. Most of the control algorithms developed to aim this goal are based on models of the PEMFC although to date there is no complete model which takes into account all the phenomenon related to the PEMFC. In this paper, we propose a control algorithm based on an experimental approach which searches for operation parameters (stack temperature, air relative humidity and air stoichiometric ratio) to optimize the efficiency of the PEMFC system. Indeed, an experimental study done beforehand showed that by acting on these parameters, the efficiency of the system which depends highly on the electric power generated by the stack, on the power lost in the auxiliaries and on the hydrogen flow rate, can be optimized. The developed algorithm is based on a local optimization method derived from the line search method. The validity of this method has been proven with different classic functions and the control algorithm has been implemented experimentally in the control interface of our PEMFC system. The experiments analysis showed promising results.
机译:如今,PEM燃料电池被认为是使用氢气最有前途的电能生产技术之一。因此,跟踪PEM燃料电池系统的效率是一个重要的研究主题。为目标的大多数控制算法基于PEMFC的模型,尽管迄今为止没有完整的模型,但考虑到与PEMFC相关的所有现象。在本文中,我们提出了一种基于实验方法的控制算法,其搜索操作参数(堆栈温度,空气相对湿度和空气化学计量比)来优化PEMFC系统的效率。实际上,预先完成的实验研究表明,通过作用于这些参数,可以优化在堆叠中损失的电力和氢气流量的功率上高度依赖于堆叠的电力的系统的效率。开发算法基于从线路搜索方法导出的本地优化方法。已经通过不同的经典功能证明了这种方法的有效性,并且在PEMFC系统的控制接口中实验实施了控制算法。实验分析显示出现有希望的结果。

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