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Network partition-based hierarchical decentralised voltage control for distribution networks with distributed PV systems

机译:基于网络分区的分配网络分配网络分配网络的分散电压控制

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摘要

The integration of large-scale distributed photovoltaics (PVs) in distribution networks (DNs) causes reverse power flow and the voltage violation problem. However, in some rural area, DNs do not have sufficient measuring information and communication ability to meet the challenge. In order to solve the voltage violation problem, this study proposes a voltage profile perception method and a voltage regulation analysis model as an alternative method to power flow calculations to guide the partition and voltage control of DNs. We then propose a novel hierarchical decentralised voltage control method strategy that combines cluster autonomous optimisation and cluster coordination optimisation in different time scales based on the DN partition. The optimal control is conducted for voltage regulation to minimise the amount of reactive power compensation and the active power curtailment under the DN operation constraints. The effectiveness and feasibility of the proposed method are demonstrated via simulation tests on a real 10.5 kV 34-node feeder in China.
机译:在分配网络(DNS)中的大规模分布式光伏(PVS)的集成导致反向电流和电压违规问题。然而,在一些农村地区,DNS没有足够的衡量信息和沟通能力来满足挑战。为了解决电压违规问题,本研究提出了一种电压分布感知方法和电压调节分析模型作为电力计算的替代方法,以引导DNS的分区和电压控制。然后,我们提出了一种基于DN分区的不同时间尺度的集群自主优化和集群协调优化的新型分层分散电压控制方法策略。对电压调节进行最佳控制,以最小化DN操作约束下的无功功率补偿量和有源电力缩减。所提出的方法的有效性和可行性是通过在中国的真实10.5 kV 34节点馈线上的仿真试验证明。

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