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Optimal Voltage Control Strategy for Voltage Regulators in Active Unbalanced Distribution Systems Using Multi-Agents

机译:使用多代理的主动不平衡分布系统中电压调节器的最佳电压控制策略

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The rapid increase in the installation of renewable energy sources, particularly solar photovoltaic (PV) sources associated with unbalanced features of distribution systems (DS), disturbs the classic control strategy of voltage regulation devices and causes voltage violation problems. This paper proposes an effective control strategy for voltage regulators in the DS based on the voltage sensitivity using a multi-agent system (MAS) architecture. The features of the unbalanced distribution system (UDS) with the PV and different types and configurations of voltage regulators are considered in the proposed strategy. The novelty of the proposed method lies in realizing both the control optimality of minimizing voltage violations and the flexibility to accommodate changes in the DS topology using an MAS scheme. An advantageous feature of using the MAS scheme is the robust control performance in normal operation and against system failure. Simulation studies have been conducted using IEEE 34-node and 123-node distribution test feeders considering high PV penetration and different sun profiles. The results show that the proposed voltage control strategy can optimally and effectively manage the voltage regulators in the UDS, which decrease their operation stresses and minimize the overall voltage deviation.
机译:可再生能源的安装快速增加,特别是与分配系统(DS)的不平衡特征相关的太阳能光伏(PV)源,扰乱了电压调节装置的经典控制策略并导致电压违规问题。本文提出了一种基于使用多助理系统(MAS)架构的电压灵敏度的DS中电压调节器的有效控制策略。在所提出的策略中考虑了使用PV和不同类型和电压调节器的不同类型和配置的不平衡分配系统(UDS)的特征。所提出的方法的新颖性在于实现了最小化电压违规的控制最优性,并使用MAS方案适应DS拓扑的变化。使用MAS方案的有利特征是正常操作和系统故障中的鲁棒控制性能。考虑到高光伏渗透和不同的太阳型材,已经使用IEEE 34节点和123节点分布测试进料器进行了仿真研究。结果表明,所提出的电压控制策略可以最佳地和有效地管理UDS中的电压调节器,其降低其操作应力并最小化整体电压偏差。

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