混合动力汽车能源控制与管理

Yonghua Cheng, J. Van Mierlo, P. Van Den Bossche, P. Lataire
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引用次数: 27

摘要

发展混合动力汽车是改善我们环境的最有效的解决方案之一。为了提高混合动力汽车的性能和效率,研究了基于超级电容器储能系统的不同混合动力传动系统拓扑结构,并考虑了能源控制和管理问题。本文提出了根据负载电流控制平均功率和峰值功率的方法。实验结果证明,采用我们的控制和管理策略,可以完全控制基于超级电容的储能系统,并且可以控制主供电系统(即使没有平均功率控制)只提供平均功率。可以提高主电源系统(如燃料电池)的效率和生命周期。实现了混合动力汽车的良好动力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Sources Control and Management in Hybrid Electric Vehicles
The development of Hybrid Electric Vehicles is one of the most effective solutions to improve our environment. For the purposes of improving the characteristic and efficiency of Hybrid Electric Vehicles, different hybrid drive train topologies with super capacitor based energy storages have been studied with concern about energy sources control and management. The methods of controlling mean power and controlling peak power according to the load current have been presented in this paper. The experimental results proved that the super capacitor based energy storage is fully controlled by using our strategy of control and management, and that the main power supply system (even without mean power control) is controlled to only supply the mean power. The efficiency and lifecycle of the main power supply system (e.g. fuel cell) can be improved. And good dynamics of the Hybrid Electric Vehicle have been achieved.
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