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Energy management based on two-phase interleaved buck-boost and boost converters for Electric Vehicles applications - using lithium-battery and fuel cell

机译:基于两相交错式降压-升压和升压转换器的能源管理,用于电动汽车应用-使用锂电池和燃料电池

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This paper deals the energy management method between the lithium-battery and the fuel cell for the Electric Vehicles (EV) applications. This idea is due to the present trend in the EV applications, knowing that the major drawback in these last one is the energetic autonomy problems. In this context, using the lithium-battery and the fuel cell with a good strategy for energy management is a promising solution to improve the system's performances. This paper is focused on the DC-bus voltage and the currents control methods based on the two-phase interleaved buck-boost and boost converters using the polynomial's correctors. The two-phase interleaved buck-boost converter is proposed to do a good compromise between the cost and the converter's efficiency. The efficiency of the two-phase interleaved converter is compared to that of the conventional buck-boost converter. The proposed control methods are implemented in the two PIC18F4431 microcontrollers to control the experimental tests bench. Through some experimental results obtained in the reduced scale, the authors present an improved energy management method for the EV applications.
机译:本文探讨了电动汽车(EV)应用中锂电池和燃料电池之间的能源管理方法。这个想法是由于EV应用程序的当前趋势而产生的,因为知道这最后一个方面的主要缺点是精力充沛的自主性问题。在这种情况下,使用锂电池和燃料电池以及良好的能源管理策略是改善系统性能的有前途的解决方案。本文重点研究基于直流多项式校正器的基于两相交错式降压-升压和升压转换器的直流母线电压和电流控制方法。提出了两相交错式降压-升压转换器,以在成本和转换器效率之间取得良好的折衷。将两相交错式转换器的效率与常规降压-升压转换器的效率进行了比较。在两个PIC18F4431单片机中实现了所建议的控制方法,以控制实验测试台。通过以缩小规模获得的一些实验结果,作者提出了一种针对电动汽车应用的改进的能源管理方法。

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