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Simulation study on hybrid ultracapactior-battery power system for PHEV

机译:PHEV混合动力超级电池动力系统的仿真研究

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A hybrid power system composited by ultracapacitor and battery pack has been studied for battery packs only system is hard to meet the requirements of high specific power and energy reasonably. A Topology structure that the ultracapacitor system directly in series with DC/DC converter and then paralleled with battery pack were analyzed. The ultracapacitor, battery pack, DC/DC converter and hybrid power system were modeled based on this topology structure. The simulation results based on the Chinese urban driving cycle and the 10% of the regeneration efficiency shows that hybrid power system could meet the requirements of vehicle's dynamic and reduce the consumption of power while the charging-discharging current of battery pack has been controlled in a reasonable limit which will be helpful to optimize the battery pack's working performance to get a longer cycling life, high efficiency and high economy.
机译:对超级电池和电池组组成的混合动力系统进行了研究,仅适用于难以合理满足高比功率和能量要求的电池组。分析了一种超级电容器系统直接与DC / DC转换器串联然后与电池组并联的拓扑结构。基于这种拓扑结构,对超级电容器,电池组,DC / DC转换器和混合电源系统进行了建模。基于中国城市行驶周期和10%的再生效率的仿真结果表明,混合动力系统可以满足车辆动态的要求,并降低了动力消耗,同时电池组的充放电电流得到控制。合理的限制,这将有助于优化电池组的工作性能,从而获得更长的循环寿命,更高的效率和更高的经济性。

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