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Control of the State-of-Charge of a Li-ion Battery Cell via Reference Governor

机译:通过参考调速器控制锂离子电池电池的充电状态

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In this paper, we propose a solution for the control of the state-of-charge of a lithiumion (Li-ion) battery cell. The aim is to design a control scheme able to charge the battery in a fast way and without violating the battery safety constraints on the different electrochemical parameters of the electrochemical model (ECheM) of the battery. The proposed solution is based on a computationally efficient formulation of the reference governor (RG) which has been designed on the basis of a reduced equivalent-hydraulic model (EHM) of the ECheM. Using appropriate suitable safety margins, the satisfaction of the constraints on the EHM ensures the satisfaction of the constraints of the ECheM. Simulation results obtained on an accurate simulator show that the proposed method, if compared with classical charge strategies, is able to considerably increase the charge performance while ensuring the satisfaction of the constraints.
机译:在本文中,我们提出了一种控制锂电片(锂离子)电池电池的充电的解决方案。目的是设计一种能够以快速的方式对电池充电的控制方案,并且在电池电池电化学模型(ECHEM)的不同电化学参数上而不违反电池安全约束。所提出的解决方案基于基于电气减少的等效水力模型(EHM)的参考调节器(RG)的计算有效配方。使用适当的适当的安全边距,对EHM的约束的满足确保了回波的约束的满足感。在精确的模拟器上获得的仿真结果表明,如果与经典电荷策略相比,该方法能够在确保对约束满足时大大提高电荷性能。

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