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Hybrid power management for fuel cell/supercapacitor series hybrid electric vehicle

机译:用于燃料电池/超级电容器系列混合动力电动车的混合动力电源管理

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摘要

The purpose of this study is to assess the potential improvement in fuel economy and performance of a fuel-cell series hybrid electric vehicle (FCHEV) in combination with a supercapacitor (SC) by using a hybrid power management (HPM) strategy. A combination of the extended Kalman filter (EKF) and traditional coulomb counting (CC) is used to conduct for estimating the SC state of charge. The combined Environmental Protection Agency (EPA) test cycles for a city and highway are considered in order to evaluate the fuel economy under realistic driving conditions. The HPM is able to deliver a maximum speed of 177 km/h, an enhanced fuel economy of 93.38 km/kg, 0-100 km/h acceleration in 9.0 seconds, a hydrogen consumption of 0.303 kg and a cruising range of 500 km for a FCHEV with a weight of 2180 kg. To place these figures in context, they are compared with the equivalent calculated figures for a 2017 Toyota Mirai fuel cell Electric Vehicle (FCEV).
机译:本研究的目的是通过使用混合动力管理(HPM)策略,评估燃料经济性和燃料电池串联混合动力电动车(FCHEV)的燃料经济性和性能的潜在改善。 扩展卡尔曼滤波器(EKF)和传统库仑计数(CC)的组合用于进行估计SC充电状态。 考虑了一个城市和公路的联合环境保护局(EPA)测试周期,以便在现实驾驶条件下评估燃油经济性。 HPM能够提供最高速度为177公里/小时,增强燃油经济性为93.38 km / kg,0-100 km / h 9.0秒,氢消耗为0.303千克,巡航范围为500公里 一个重量为2180千克的Fchev。 为了将这些数字放置在下文中,将它们与2017丰田Mirai燃料电池(FCEV)的等效计算的图进行了比较。

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