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A power split control algorithm for fuel cell electric vehicles using batteries or supercapacitors as auxiliary storage system

机译:使用电池或超级电容器作为辅助存储系统的燃料电池电动汽车的功率分配控制算法

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In recent years there is growing interest for fuel cell electric vehicles (FCVs) as electric battery technology fails to date to ensure an autonomy comparable to that of conventional vehicles. An FCV requires an auxiliary storage system to cope with peak power demand and to recovery of braking energy. In the paper, we propose a power split control algorithm able to manage the power flow between fuel cell and the auxiliary storage system according to their dynamic behavior. In particular, we define the lumped resistance of fuel cell, lithium battery and supercapacitor in order to estimate their maximum allowed current variation. In order to show the effectiveness of the proposed approach, we test the power split control algorithm by using different drive cycle. Several simulation results are presented and discussed.
机译:近年来,对燃料电池电动汽车(FCV)的兴趣日益浓厚,因为迄今为止电池技术还无法确保与传统汽车相比具有更高的自主性。 FCV需要辅助存储系统来应对峰值功率需求并恢复制动能量。在本文中,我们提出了一种功率分配控制算法,该算法可根据燃料电池和辅助存储系统之间的动态行为来管理它们之间的功率流。特别是,我们定义了燃料电池,锂电池和超级电容器的集总电阻,以估计它们的最大允许电流变化。为了显示该方法的有效性,我们通过使用不同的驱动周期来测试功率分配控制算法。提出并讨论了几种仿真结果。

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