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Optimal control strategy on battery storage systems for decoupled active-reactive power control and damping oscillations

机译:解耦有功-无功控制和阻尼振荡的电池存储系统的最优控制策略

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摘要

In recent years, battery storage systems have been widely studied in electrical networks. However, most of the studies have focused on active power in batteries. But, batteries can also produce or absorb reactive power. As well, impact of batteries on stability of the network has not been adequately addressed. Both the mentioned issues (i.e., reactive power and stability) make great impact on the battery utility such as ability of battery in energy management and power control. In order to overcome these shortcomings, current paper realizes a new control strategy on batteries for decoupled active-reactive power control. The proposed control strategy alters active power subject to constant reactive power and vice-versa. Two control loops are designed to control active and reactive powers. The control loops are equipped with PI controllers (i.e., tracking controllers). As well, both control loops of active and reactive powers are equipped with supplementary stabilizers (i.e., regulatory controllers). All controllers are simultaneously tuned by cultural-PSO-co-evolutionary (CPCE) algorithm. Several cases are simulated to demonstrate the effectiveness of the introduced strategy. It is verified that the proposed strategy is an efficient methodology to utilize battery storage systems and arising all abilities and benefits of the batteries at the same time.
机译:近年来,电池存储系统已在电气网络中得到广泛研究。但是,大多数研究都集中在电池的有功功率上。但是,电池也可以产生或吸收无功功率。同样,尚未充分解决电池对网络稳定性的影响。上述两个问题(即无功功率和稳定性)都对电池的实用性产生了很大的影响,例如电池在能量管理和功率控制中的能力。为了克服这些缺点,当前的论文实现了一种用于电池分离的有功-无功功率控制的新控制策略。所提出的控制策略在有功功率不变的情况下改变有功功率,反之亦然。设计了两个控制回路来控制有功和无功功率。控制回路配备有PI控制器(即跟踪控制器)。同样,有功功率和无功功率的两个控制回路均配有辅助稳定器(即调节控制器)。通过文化-PSO-协同进化(CPCE)算法可同时调整所有控制器。模拟了几种情况,以证明所引入策略的有效性。验证了所提出的策略是一种有效的方法,可以利用电池存储系统并同时产生电池的所有功能和优势。

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