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A control strategy for optimizing the power flows supplied by two different storage units

机译:优化两个不同存储单元提供的功率流的控制策略

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The DC distribution networks can easily benefit from integration of electrical storage systems, such as batteries and supercapacitors, to manage the network operations. A proper combination of these two storage units can lead to a storage system able to satisfy power requests lasting from seconds to hours. However, the use of more than one storage unit gives rise to the problem of deciding how to split the power between the two technologies. In the paper, authors propose a control strategy to divide the power demand between the two storage units ensuring, at the same time: i) a peak shaving action for the interface converter opportunely slowed; ii) the lifetime increase of storage units by means of a proper control adapted to the dynamic performances of each storage device; iii) the keeping of the state of charge of each unit around a desired value. In the paper, the effectiveness of the proposed strategy is shown by means of numerical simulations. In particular, very good results are obtained also when the power demand is completely random.
机译:DC配电网络可以轻松地受益于集成电存储系统(例如电池和超级电容器)来管理网络运行。这两个存储单元的正确组合可以导致存储系统能够满足持续数秒至数小时的电源需求。然而,使用不止一个存储单元引起了决定如何在两种技术之间分配功率的问题。在本文中,作者提出了一种控制策略,可在两个存储单元之间分配功率需求,同时确保:i)适当降低了接口转换器的调峰作用; ii)通过适应每个存储设备动态性能的适当控制来延长存储单元的使用寿命; iii)将每个单元的充电状态保持在期望值附近。在本文中,通过数值模拟显示了所提出策略的有效性。特别地,当功率需求是完全随机的时,也获得了非常好的结果。

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