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Cost and Efficiency Analysis of Different Powertrain Architectures for Fuel Cell Electric Vehicles

机译:燃料电池电动汽车不同动力总成架构的成本和效率分析

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Fuel Cell Electric Vehicles are becoming more and more important for the future of mobility, in particular for long trips. The efficiency and the performances of the vehicles are fundamental for the development of this technology. In this paper, three fuel cell vehicles electrical architectures are compared in terms of efficiency, performances and costs. The three analysed architectures differ for the number and position of dc/dc converters used to connect battery and fuel cell to the dc bus. To perform the comparison, powertrain components of the three vehicles have been properly sized, a model has been built in Simulink and the worldwide harmonized light vehicle test procedure cycle has been used as a reference cycle for the simulations. The developed model is then used to compare the same architecture for three different dc bus voltages.
机译:燃料电池电动汽车对于机动性的未来,特别是对于长途旅行而言,变得越来越重要。车辆的效率和性能是该技术发展的基础。本文在效率,性能和成本方面对三种燃料电池汽车的电气架构进行了比较。对于将电池和燃料电池连接到直流母线的DC / DC转换器的数量和位置,这三种分析的体系结构有所不同。为了进行比较,对这三辆车的动力总成组件进行了适当的尺寸调整,在Simulink中建立了一个模型,并在全球范围内使用了统一的轻型车测试程序作为仿真的参考周期。然后,将开发的模型用于比较三种不同直流总线电压的相同架构。

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