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Heuristic Versus Optimal Charging of Supercapacitors, Lithium-Ion, and Lead-Acid Batteries: An Efficiency Point of View

机译:超级电容器,锂离子电池和铅酸电池的启发式与最佳充电:效率观点

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摘要

Electrical energy storage systems are extensively utilized in applications, including electrified vehicles, renewable power generation, and electronic devices. While discharging events are a function of the power demand, the charging procedure is often controllable. This paper evaluates different charging strategies for stand-alone supercapacitors (SCs), lithium-ion (Li-ion), and lead-acid batteries. Constant power and optimal charging strategies are formulated and the corresponding charging currents are obtained. Efficiency analysis for different charging strategies and charging times (slow and fast) is performed. The identical objective function for all modules is to minimize the resistive losses during a given charging time by utilizing Pontryagin's minimum principle. An analytical solution exists for the SC case, which is constant current charging. The variation of the total internal resistance with state of charge in lead-acid chemistry is considerable, and the optimal charging problem results in a two-point boundary value problem. In case of the Li-ion battery, the model includes the electronic as well as polarization resistance. Furthermore, in order to investigate the influence of temperature on the optimal charging of the Li-ion battery, a constrained optimal control problem for a three state electrothermal model is formulated and solved using dynamic programming.
机译:电能存储系统广泛用于各种应用中,包括电动车辆,可再生能源发电和电子设备。虽然放电事件是功率需求的函数,但充电过程通常是可控的。本文评估了独立超级电容器(SCs),锂离子(Li-ion)和铅酸电池的不同充电策略。制定了恒定功率和最佳充电策略,并获得了相应的充电电流。进行了针对不同充电策略和充电时间(慢速和快速)的效率分析。所有模块的相同目标功能是通过利用Pontryagin的最小原理将给定充电时间内的电阻损耗降至最低。对于SC情况,存在一种分析解决方案,即恒流充电。铅酸化学中总内部电阻随电荷状态的变化是相当大的,最佳充电问题导致两点边界值问题。对于锂离子电池,该模型包括电子电阻和极化电阻。此外,为了研究温度对锂离子电池最佳充电的影响,采用动态规划公式提出并解决了三态电热模型的约束最优控制问题。

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