Simulation analysis of fuel economy of a fuel cell/battery passive hybrid power system for commercial vehicles

Ling Xu, Zunyan Hu, Liangfei Xu, Jianqiu Li, M. Ouyang
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Abstract

Fuel cell/battery passive hybrid power systems have the potential of saving energy due to the avoidance of DC/DC power loss. However, their energy-saving effect has not been investigated in previous research. This paper studies the fuel economy of a fuel cell/battery passive hybrid system for commercial vehicles through simulation. The energy consumption of the passive hybrid configuration is compared to that of a conventional active configuration under high-speed static conditions. The results show that the passive configuration can save energy by 3%-12% under the selected condition and energy management strategy (EMS). The energy-saving percentage increases as the efficiency of the fuel cell engine increases. When the initial SOC is lower than the sustaining target of the EMS, the energy-saving effect becomes more significant. This study confirms the energy-saving effect of the fuel cell passive hybrid system.
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商用车燃料电池/蓄电池被动混合动力系统燃油经济性仿真分析
燃料电池/电池无源混合动力系统由于避免了直流/直流功率损耗而具有节能的潜力。然而,在以往的研究中,并没有对其节能效果进行研究。本文通过仿真研究了商用车燃料电池/蓄电池被动混合动力系统的燃油经济性。在高速静态条件下,对被动混合动力结构与传统主动结构的能耗进行了比较。结果表明,在选定的工况和能源管理策略(EMS)下,被动配置可节能3% ~ 12%。随着燃料电池发动机效率的提高,节能率也随之提高。当初始荷电状态低于EMS的持续目标时,节能效果更加显著。本研究证实了燃料电池被动混合动力系统的节能效果。
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