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On the energy efficiency of standalone fuel cell/renewable hybrid power sources Part II: Simulation results for variable load profile with different renewable energy sources profiles (RES)

机译:关于独立燃料电池/可再生混合动力源的能源效率第二部分:具有不同可再生能源配置文件(RES)的可变负载配置文件的仿真结果

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). The second part of the paper presents the simulation results for variable load profile with different renewable energy sources profiles (RES). As well as in the first part of the paper, the Extremum Seeking Control (ESC) optimization of the Fuel Cell (FC) electrical energy efficiency and the total fuel consumption will be implemented here to find the global maximum of the multimodal optimization function defined here as the FC net power. The load dynamic profile for both topologies (Air-LF, Fuel-LF) is set using the following sequence of the load currents: time sequence [s]: [0 2 3 8 9 10 10.5 12] and the sequence of the load currents [A]: [14 14 29 29 -6.5 -6.5 29 29]. The RESs power profile it is obtained using photovoltaic panels and wind turbines, for a sunny day with clouds and moderate wind during the evening. The performance for these HPS topologies are compared for variable load profile with different renewable energy sources profiles (RES) based on the following indicators: fuel consumption efficiency (Fuel
机译:)。本文的第二部分介绍了具有不同可再生能源曲线(RES)的可变负载曲线的仿真结果。与本文的第一部分一样,将在此处实施燃料电池(FC)电能效率和总燃料消耗的极值搜索控制(ESC)优化,以找到此处定义的多峰优化函数的全局最大值作为FC的净功率。使用以下负载电流顺序设置两种拓扑(空气-低频,燃料低频)的负载动态曲线:时间顺序[s]:[0 2 3 8 9 10 10.5 12]和负载电流顺序[A]:[14 14 29 29 -6.5 -6.5 29 29]。 RESs功率曲线是使用光伏板和风力涡轮机获得的,晴天时晴朗,晚上有云和中风。根据以下指标,将这些HPS拓扑的性能与可变负载曲线与不同可再生能源曲线(RES)进行比较:燃油效率(Fuel)

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