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Utilization of Battery Storage for Flexible Power Management in Active Distribution Networks

机译:利用电池存储在有源配电网中进行灵活的电源管理

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Integration of energy storage in power distribution systems is expected to be high in the future to manage the power variations from decentralized renewable energy resources and meet the load demand reliably. In this paper, utilization of battery storage by the distribution system operator for peak shaving, reduction of network power loss and network congestion management is addressed for a low-voltage active distribution network. An optimal control method for battery storage based on model predictive control is proposed to minimize the peak PV power injection to the grid also considering the network power loss reduction and battery degradation. The proposed method solves a linear optimal power flow formulation to calculate the battery active and reactive power set points at each time step. The proposed method is useful in accommodating maximum PV power without violating the network voltage and current limits. Simulation studies are conducted using Matlab on a Danish low-voltage distribution network. The simulation results show that the proposed control method is effective for reducing the peak PV power in-feed with minimum network power loss and battery degradation.
机译:将来,配电系统中储能的集成度很高,以管理分散式可再生能源产生的功率变化并可靠地满足负载需求。在本文中,针对低压有源配电网,解决了配电系统运营商利用电池存储进行调峰,减少网络功率损耗和网络拥塞管理的问题。提出了一种基于模型预测控制的最优电池存储控制方法,该方法同时考虑了电网功耗的减少和电池的退化,从而最大程度地减小了向电网注入的峰值光伏功率。所提出的方法解决了线性最优潮流公式,以计算每个时间步的电池有功和无功功率设定点。所提出的方法可用于容纳最大PV功率而不会违反网络电压和电流限制。使用Matlab在丹麦低压配电网络上进行了仿真研究。仿真结果表明,所提出的控制方法可有效降低电网的峰值光伏馈电,同时将网络功耗和电池退化降至最低。

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