一种改进的电动汽车电池/超级电容器混合储能系统能量管理策略

Kai Man So, Y. S. Wong, G. Hong, W. Lu
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引用次数: 5

摘要

为了提高电池的循环寿命和行驶里程,人们提出了用于电动汽车的电池/超级电容器(UC)混合储能系统。现有的工作主要集中在电池和UC的电源管理策略上,而能量管理策略仍然是相对经验的。我们提出了一种更严格的方法来设置目标UC能级使用速度相关的波段。这允许UC包含足够的能量为未来的加速,并有足够的能力储存能量从未来再生制动。此外,通过调整能带高度,可以显著减小UC的储能尺寸。我们表明,其他作品不能同时实现这两个目标,除非它们的UCs尺寸更大(最多三倍)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved energy management strategy for a Battery/Ultracapacitor Hybrid Energy Storage System in Electric Vehicles
Battery/Ultracapacitor (UC) Hybrid Energy Storage Systems for Electric Vehicles have been proposed to increase battery cycle life and driving range. Existing works focus on power management strategies of the battery and UC, while energy management strategies are still relatively empirical. We propose a more rigorous method of setting the target UC energy level using a speed-dependent band. This allows the UC to contain sufficient energy for future accelerations, and have sufficient capacity to store energy from future regenerative braking. Furthermore, by adjusting the band height, the UC size in terms of energy stored can be reduced significantly. We show other works cannot achieve both goals simultaneously unless their UCs are sized larger (up to three times).
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