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Better Fuel Economy by Optimizing Airflow of the Fuel Cell Hybrid Power Systems Using Fuel Flow-Based Load-Following Control

机译:利用基于燃料流量的负载跟随控制优化燃料电池混合动力系统的气流,更好地燃料经济性

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摘要

In this paper, the results of the sensitivity analysis applied to a fuel cell hybrid power system using a fuel economy strategy is analyzed in order to select the best values of the parameters involved in fuel consumption optimization. The fuel economy strategy uses the fuel and air flow rates to efficiently operate the proton-exchange membrane (PEM) fuel cell (FC) system based on the load-following control and the global extremum seeking (GES) algorithm. The load-following control will ensure the charge-sustained mode for the batteries’ stack, improving its lifetime. The optimization function’s optimum, which is defined to improve the fuel economy, will be tracked in real-time by two GES algorithms that will generate the references for the controller of the boost DC-DC converter and air regulator. The optimization function and performance indicators (such as FC net power, FC electrical efficiency, fuel efficiency, and fuel economy) have a multimodal behavior in dithers’ frequency. Furthermore, the optimum in the considered range of frequencies depends on the load level. So, the best value could be selected as the frequency where the optimum is obtained for the most load levels. Considering a dither frequency of 100 Hz selected as the best value, the sensitivity analysis of the fuel economy is further analyzed for different values of the weighting parameter keff, highlighting the multimodal feature in the parameters for the optimization function and fuel economy as well. A keff value around of 20 lpm/W seems to give the best fuel economy in the full range of load.
机译:在本文中,分析了应用于使用燃料经济性战略的燃料电池混合动力系统的灵敏度分析的结果,以便选择燃料消耗优化所涉及的参数的最佳值。燃油经济性策略使用的燃料和空气流速高效运行的质子交换膜(PEM)燃料电池(FC)的基础上的负荷跟踪控制和全球极值搜索(GES)算法系统。负载跟随控制将确保电池堆叠的电荷持续模式,提高其寿命。优化功能的优化,它的定义,以提高燃油经济性,将实时由两个GES算法将产生升压DC-DC转换器和空气调节器的的控制器中的引用进行跟踪。优化功能和性能指示器(如FC净功率,FC电效率,燃料效率,燃料经济性)在Dithers'频率下具有多模峰行为。此外,所考虑的频率范围内的最佳值取决于负载水平。因此,可以选择最佳值作为为最大负载级别获得最佳的频率。考虑100赫兹选为最佳值的抖动频率,燃料经济性的敏感性分析进一步分析加权参数keff的不同值,突出在用于优化功能和燃油经济性以及参数多模式功能。大约20Lpm / w左右的Keff值似乎在全方位的负载中提供了最佳燃油经济性。

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