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Buck-boost converters design for Ultracapacitors and lithium battery mixing in hybrid vehicle applications

机译:用于混合动力汽车应用中的超级电容器和锂电池混合的降压-升压转换器设计

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This paper presents a careful study related to a more efficient energy management between lithium battery (with rated voltage of 24V) and Ultracapacitors (UC) for Hybrid Electric Vehicle (HEV) applications. This association is due to the present trend in the field, knowing that the major drawback of the HEV is the autonomy problem. Thus, using the Hybrid energy source (such as UC + battery) and with a good energy management improves the HEV performances. In this paper, battery and Ultracapacitors (10 cells of 2.7V in series) are coupled to DC-bus using two buck-boost converters. The main contribution of this paper is focused on DC-bus voltage and currents control strategy based on polynomial (RST) controller. Through some simulations in MATLAB/Simulink software and experimental results, the authors present an improved energy management for HEV.
机译:本文针对与混合动力汽车(HEV)应用中的锂电池(额定电压为24V)和超级电容器(UC)之间更有效的能量管理进行了仔细的研究。这种关联是由于该领域的当前趋势,因为知道HEV的主要缺点是自治性问题。因此,使用混合能源(如UC +电池)并具有良好的能源管理可以改善混合动力汽车的性能。在本文中,使用两个降压-升压转换器将电池和超级电容器(10个串联的2.7V电池)耦合到DC总线。本文的主要贡献集中在基于多项式(RST)控制器的DC总线电压和电流控制策略上。通过MATLAB / Simulink软件中的一些仿真和实验结果,作者提出了一种改进的混合动力汽车能源管理系统。

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