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首页> 外文期刊>International journal of green energy >Investigation of the effects of battery types and power management algorithms on drive cycle simulation for a range-extended electric vehicle powertrain
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Investigation of the effects of battery types and power management algorithms on drive cycle simulation for a range-extended electric vehicle powertrain

机译:电池类型和电力管理算法对延伸电动车动力总成的驱动周期仿真影响的研究

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Fuel cell (FC) hybrid vehicle powertrains are an attractive technology especially for automotive applications because of their higher efficiency and lower emissions compared to conventional vehicles. This study focuses on the design of an FC hybrid powertrain system and evaluation of its simulations for a given speed profile through two alternative power management algorithms (PMAs). Parameters suitable for a small vehicle were taken into consideration in the mathematical model of the vehicle. The proposed hybrid powertrain consists of an energy storage system, composed of a 4-kg battery pack (either lithium-ion (Li-ion) battery, nickel metal hydride, or nickel-cadmium) and a direct methanol fuel cell (DMFC) as the range extender. The PMAs basically aim to fulfill the power requirements of the vehicle and decide how to command the power split between the battery and the FC. The model comprising a DMFC, a battery, and PMAs was developed in MATLAB/Simulink environment. The polarization curve of the FC was obtained using a one-dimensional DMFC model. Vehicle power requirements for a drive cycle were calculated using the equations of longitudinal dynamics of vehicle, and the results were integrated into MATLAB/Simulink model. As a result of the simulations, methanol consumption, state of charge of the battery, and power output of the FC were compared for the PMAs. This comparison shows the effect of PMAs on the hybrid vehicle performance for three battery types. The results indicate that the vehicle range could be increased when proper strategy is used as PMA.
机译:燃料电池(FC)混合动力车辆动力传递是一种吸引力的技术,特别是对于与传统车辆相比的效率和较低的排放,特别适用于汽车应用。本研究专注于通过两个替代电力管理算法(PMA)设计FC混合动力系统和对给定速度简档的仿真的评估。在车辆的数学模型中考虑了适用于小型车辆的参数。所提出的混合动力系由储能系统组成,由4-kg电池组组成(锂离子(锂离子)电池,镍氢化物或镍镉)和直接甲醇燃料电池(DMFC),如范围扩展器。 PMA基本上旨在满足车辆的电源要求,并决定如何命令电池和FC之间的功率分配。包括DMFC,电池和PMA的模型是在Matlab / Simulink环境中开发的。使用一维DMFC模型获得Fc的偏振曲线。使用车辆纵向动态的方程计算驱动周期的车辆电源要求,结果集成到MATLAB / SIMULINK模型中。由于模拟,对PMA进行了比较了甲醇消耗,电池的电池充电状态和FC的电源输出。该比较显示了PMA对三种电池类型的混合动力车型速率性能的影响。结果表明,当适当的策略用作PMA时,可以增加车辆范围。

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