首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >An electric powertrain modelling of a fuel cell hybrid electric vehicle and development of a power distribution algorithm using flop control
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An electric powertrain modelling of a fuel cell hybrid electric vehicle and development of a power distribution algorithm using flop control

机译:燃料电池混合动力汽车的动力总成建模和使用翻牌控制的功率分配算法的开发

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摘要

This paper presents an electric powertrain model of a parallel-type fuel cell hybrid electric vehicle (FCHEV) and its robust H_∞ controller for efficient power distribution between a fuel cell and a battery. The electric powertrain of the parallel-type FCHEV is composed of a fuel cell stack system, a d.c.-to-d.c. converter, and a battery. The fuel cell stack system is connected to the battery through the d.c.-to-d.c. converter, which is a key component for power distribution between the fuel cell and the battery. In this study, the electric powertrain model of the FCHEV was derived from the dynamic differential equations of the equivalent-circuit model that describes the electric powertrain. Using this model, the robust H_∞ controller was designed to control the power distribution between the fuel cell and the battery efficiently. Finally, the results of driving-cycle simulation verified the performance of the proposed robust H_∞ controller.
机译:本文提出了一种并联型燃料电池混合动力汽车(FCHEV)的电动动力系统模型及其鲁棒H_∞控制器,以实现燃料电池与电池之间的有效功率分配。并联式FCHEV的动力总成由一个d.c.到d.c的燃料电池堆系统组成。转换器和电池。燃料电池堆系统通过d.c.到d.c.连接到电池。转换器,它是燃料电池和电池之间功率分配的关键组件。在这项研究中,FCHEV的电力传动系模型是从描述电力传动系的等效电路模型的动态微分方程导出的。使用该模型,设计了鲁棒的H_∞控制器,以有效控制燃料电池和电池之间的功率分配。最后,驾驶循环仿真的结果验证了所提出的鲁棒H_∞控制器的性能。

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