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The influences of energy storage and energy management strategies on fuel consumption of a fuel cell hybrid vehicle

机译:能量储存与能源管理策略对燃料电池混合动力车辆燃料消耗的影响

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A new road vehicle powertrain simulator is presented and applied to vehicle dynamics. The electric motor, the fuel cell, the energy storage system (ESS), the braking rules, and the energy management strategy (EMS) heuristic rules are modelled. The role of the EMS and the ESS in the fuel consumption of a fuel cell hybrid vehicle is analysed, and the influence of the duty cycle on the results is examined. Simplified EMS if-then heuristic rules are used to describe powertrain behaviour. The developed simulator is used in an actual application, a fuel cell hybrid taxi, performing over a standard driving cycle, the NEDC, and over a specific duty cycle, the London DC, both with zero grade but with different dynamics. The results indicate that the EMS can have a significant impact on hydrogen consumption, leading to 7-10% less energy consumption because of the EMS improvements. Additionally, the EMS has less impact on the duty cycle when the vehicle is subjected to a more dynamic profile. The design of the EMS will depend on the particular ESS. The achieved 5% impact in the same duty cycle, especially with the hybrid ESS, clearly indicates the importance of optimizing the EMS according to the ESS components and vehicle usage.
机译:新的道路车辆动力总成模拟器被呈现并应用于车辆动态。建模电动机,燃料电池,储能系统(ESS),制动规则和能量管理策略(EMS)启发式规则。分析了EMS和ESS在燃料电池混合动力车辆的燃料消耗中的作用,研究了占空比对结果的影响。简化的EMS IF-DEN-DEN-DEN-DEN-TEM-DEN-TEM-DEN-DEN-TEM-TEM-TOM-DENS-THE SHOTION规则来描述动力总成行为。开发的模拟器用于实际应用,燃料电池混合出租车,在标准驾驶循环,NEDC和特定占空比,伦敦DC,既具有零等级,也具有不同的动态。结果表明,由于EMS改进,EMS对氢消耗产生重大影响,导致能耗较低7-10%。另外,当车辆经受更多动态型材时,EMS对占空比的影响较小。 EMS的设计将取决于特定的ESS。在相同的占空比下实现了5%的影响,特别是在混合体上,清楚地表明了根据ESS组件和车辆使用量优化EMS的重要性。

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