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Effects of drivetrain hybridization on fuel economy and dynamic performance of parallel hybrid electric vehicles

机译:动力总成混合动力对混合动力电动汽车燃油经济性和动态性能的影响

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Hybrid electric vehicles have proved to be the most practical solution in reaching very high fuel economy as well as very low emissions. However, there is no standard solution for the optimal size or ratio of the internal combustion engine and the electric system. The optimum choice includes complex tradeoffs between the heat engine and electric propulsion system on one hand and cost, fuel economy, and performance on the other. Each component, as well as the overall system, have to be optimized to give optimal performance and durability at a low price. In this paper, we look at the effects of hybridization on fuel economy and dynamic performances of vehicles. Different hybridization levels from mild to full hybrid electric traction systems are examined. We also present the optimum level of hybridization for typical passenger cars. This study shows that low hybridization levels provide an acceptable fuel economy benefit at a low price, while the optimal level of hybridization ranges between 0.3 and 0.5, depending on the total vehicle power.
机译:事实证明,混合动力电动汽车是实现极高燃油经济性和极低排放量的最实用解决方案。但是,对于内燃机和电气系统的最佳尺寸或比例,没有标准的解决方案。最佳选择包括一方面在热机和电力推进系统之间进行复杂的权衡,另一方面在成本,燃油经济性和性能上进行权衡。每个组件以及整个系统都必须进行优化,以低廉的价格提供最佳的性能和耐用性。在本文中,我们研究了混合动力对燃油经济性和车辆动态性能的影响。研究了从轻度混合动力到完全混合动力牵引系统的不同混合动力级别。我们还介绍了典型乘用车的最佳杂交水平。这项研究表明,低混合动力级别以低价提供了可接受的燃油经济性收益,而最佳混合动力级别则介于0.3到0.5之间,具体取决于总的车辆功率。

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