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An optimized energy management strategy for fuel cell hybrid vehicles

机译:燃料电池混合动力车辆的优化能源管理策略

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Fuel cell hybrid vehicles are environmentally friendly and have good development prospects.Their energy management is very important,but there are currently few studies on this topic.In this paper,an optimized energy management strategy specifically applied to fuel cell hybrid vehicles is proposed.Fuel cell hybrid vehicles have some different characteristics from ordinary hybrid vehicles,which need to be considered in energy management.For the fuel cell to remain activated during driving,its output power must remain above a minimum power.In addition,it takes some time for the fuel cell to start up.These characteristics are considered in the vehicle model.The energy management strategy proposed in this paper maximizes energy use efficiency by controlling the SOC value of the battery.The SOC value of the battery is in the proper range during driving.At high speeds,fuel is consumed as a source of energy and the battery is charged to keep its SOC at a high level.When approaching the destination or when the vehicle is traveling at a low speed,the battery is discharged to reduce fuel consumption.Applying this strategy to the ECE-15 and EUDCL environments,the simulation results show that this optimized energy management strategy improves the energy efficiency of the fuel cell and enables the battery to operate at the appropriate power.
机译:燃料电池混合动力汽车是环保,并具有良好的发展prospects.Their能源管理是非常重要的,但目前有一些研究对这个topic.In本文提出了一种优化的能源管理战略专门应用于燃料电池混合动力汽车是proposed.Fuel电池混合车辆具有从普通的混合动力汽车,其需要在能量management.For燃料电池被认为是在行驶期间保持激活一些不同的特性,其输出功率必须保持最小power.In此外上面,它需要一些时间燃料电池开始up.These特性在本文提出的车辆model.The能量管理策略考虑通过控制所述电池的SOC battery.The值的SOC值最大化能量使用效率是在适当的范围内行驶期间。在高速行驶时,燃料被消耗作为能量源和所述电池充电,以保持其在SOC高level.When接近德斯坦通货膨胀或当车辆以低速行驶时,电池进行放电,以减少燃料consumption.Applying这种策略的ECE-15和EUDCL环境中,模拟结果表明,该优化的能量管理策略提高了燃料的能量效率细胞,并且使电池在适当的电力来操作。

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