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Distributed voltage control for active distribution networks based on distribution phasor measurement units

机译:基于配电相量测量单元的有源配电网分布式电压控制

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This paper explores a distributed coordinated control algorithm for active distribution networks (ADNs) based on measurements of distribution phasor measurement units (DPMUs) that are only installed at a portion of network nodes. First of all, a network topology simplification method is proposed to deal with the lack of impedance and power information in ADNs. Specifically, sub-networks with unknown impedance and power information are transformed to simplified networks with known equivalent parameters that are derived from the measurements of DPMUs at the sub-network boundaries. After that, a fully distributed control strategy utilizing a multiple agent system (MAS) is employed to control voltage during voltage excursions in ADNs, and to optimize network losses if no voltage excursions occur. MAS achieves global voltage control through distributed decision-making according to the voltage-power sensitivities that are calculated by each agent based on local and neighbourhood measurements. MAS balances reactive power locally to reduce network active power losses. The convergence of the proposed distributed voltage control method is proved. Finally, the feasibility and effectiveness of the proposed method has been demonstrated on a modified IEEE 33-bus system.
机译:本文基于仅安装在一部分网络节点上的分布相量测量单元(DPMU)的测量结果,探索了用于有源配电网(ADN)的分布式协调控制算法。首先,提出一种网络拓扑简化方法,以解决ADN中缺乏阻抗和功率信息的问题。具体而言,将具有未知阻抗和功率信息的子网转换为具有已知等效参数的简化网络,这些等效参数是根据子网边界处DPMU的测量结果得出的。此后,采用多代理系统(MAS)的完全分布式控制策略可在ADN中发生电压偏移时控制电压,并在不发生电压偏移时优化网络损耗。 MAS根据每个代理基于本地和邻域测量值计算出的电压-功率敏感度,通过分布式决策来实现全局电压控制。 MAS在本地平衡无功功率,以减少网络有功功率损耗。证明了所提出的分布式电压控制方法的收敛性。最后,在改进的IEEE 33总线系统上证明了该方法的可行性和有效性。

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