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Real-Time Volt/Var Control in Active Distribution Networks With Data-Driven Partition Method

机译:具有数据驱动分区方法的主动分配网络中的实时Volt / var控制

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摘要

The penetration of photovoltaics (PVs) and electric vehicles (EVs) is increasing in active distribution networks (ADN), which may lead to severe voltage violation problems. This paper proposes a two-stage real-time Volt/Var control method to mitigate fast voltage violations. In the first stage, hourly on-load tap changer (OLTC) and capacitor banks (CBs) are scheduled based on the optimal power flow method. The optimization problem is formulated as a mixed-integer second-order cone programming (MISOCP) which can be effectively solved. In the second stage, a data-driven network partition method is proposed to select critical bus and assess the voltage violation risk of each control area, followed by the intra-day dispatch of EVs. Based on the partition results, reactive power of PVs and EVs is controlled in real-time to mitigate voltage violations. Considering the suddenly active power drop of PVs, a rule-based control strategy coordinating PVs and CBs is proposed to improve the reactive power reserve in ADN. The proposed approach is tested on the IEEE 33-bus and 123-bus distribution networks and simulation results verify the effectiveness both in network partition and real-time voltage control.
机译:光伏(PVS)和电动车辆(EVS)的渗透在主动分配网络(ADN)中增加,这可能导致严重的电压违规问题。本文提出了一种两级实时伏/瓦控制方法,以减轻快速电压违规。在第一阶段,根据最佳功率流量来调度每小时的载荷分接开关(OLTC)和电容器组(CBS)。优化问题被配制为可以有效解决的混合整数二阶锥编程(MISOCP)。在第二阶段,提出了一种数据驱动的网络分区方法来选择关键总线并评估每个控制区域的电压违规风险,然后是EV的日期分派。基于分区结果,PVS和EVS的无功功率是实时控制的,以减轻电压违规。考虑到PVS突然有效功率降,提出了一种规则的控制策略协调PVS和CBS,以改善ADN中的无功功率储备。所提出的方法在IEEE 33总线和123总线分配网络上测试,仿真结果验证了网络分区和实时电压控制的有效性。

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