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Inverter-Less Hybrid Voltage/Var Control for Distribution Circuits With Photovoltaic Generators

机译:带有光伏发电机的配电电路的无逆变器混合电压/无功控制

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This paper proposes a hybrid voltage/var control (VVC) architecture for distribution systems with a high PV penetration. The architecture consists of two control loops: coordinated normal control loop and uncoordinated transient cloud movement control loop. In the first loop, hourly dispatches are scheduled for on-load tap changer (OLTC), capacitor banks (CBs), and static var compensators (SVCs) based on forecasted load and PV power output so as to minimize power losses and voltage deviations. The second loop is triggered when large variations of PV power output caused by rapid cloud movement happen. All SVCs and CBs become self-controlled based on local voltage measurements with the single control objective to minimize voltage deviations. SVCs will operate firstly to flatten the voltage profile. If SVCs fail, CBs will switch to provide reactive power support. A time-adaptive delay is applied to each CB to avoid overcompensation. Case studies show the proposed method can optimize the system operation and is effective in voltage regulation with PV generators.
机译:本文提出了一种用于具有较高PV渗透率的配电系统的混合电压/无功控制(VVC)架构。该体系结构由两个控制环组成:协调的法线控制环和不协调的瞬态云运动控制环。在第一个循环中,基于预测的负载和PV功率输出,为有载分接开关(OLTC),电容器组(CB)和静态无功补偿器(SVC)安排每小时调度,以最大程度地降低功率损耗和电压偏差。当由快速的云运动引起的PV功率输出的巨大变化发生时,触发第二个循环。所有SVC和CB都基于本地电压测量值进行自我控制,并具有单个控制目标,以最大程度地减小电压偏差。 SVC将首先运行以拉平电压曲线。如果SVC发生故障,则CB将切换以提供无功功率支持。对每个CB都应用了时间自适应延迟,以避免过度补偿。案例研究表明,该方法可以优化系统运行,并且在光伏发电机的电压调节中有效。

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