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Three-layer voltage/var control strategy for PV cluster considering steady-state voltage stability

机译:考虑稳态电压稳定性的光伏集群三层电压/无功控制策略

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Different from the distributed photovoltaic (PV) system, large-scale PV cluster is regarded as a weakly connected sending-end system, encountering severe voltage issues. This paper proposes a three-layer voltageivar control (VVC) strategy for the coordination of WC devices in PV cluster, which considers not only voltage deviation, but also steady-state voltage stability (SVS) of the system. The central approaches are adopted into the former two layers. In the first layer, capacitor banks and on-load tap changer are scheduled based on 30-min interval PV active power forecast. In the second layer, PV inverters and static synchronous compensator (STATCOM) are scheduled based on 10-min interval PV active power forecast. Considering computation effort and communication delay, in the third layer, the PV inverters and STATCOM continue to respond to real-time PV active power via the local approach. For improving the application performance of the centralized approaches, model prediction control is applied in the first control layer for enhancing robustness of the control. The sensitivity analysis is used for reducing optimization time in the second layer. Simulation results indicate that the proposed VVC strategy is effective for PV cluster to ensure the voltage within the safe range and improve SVS of the whole PV cluster. (C) 2019 Elsevier Ltd. All rights reserved.
机译:与分布式光伏(PV)系统不同,大型PV群集被认为是一个弱连接的发送端系统,遇到严重的电压问题。本文提出了一种三层电压无功控制(VVC)策略,用于光伏集群中WC设备的协调,该策略不仅考虑了电压偏差,还考虑了系统的稳态电压稳定性(SVS)。前两层采用了中心方法。在第一层中,基于30分钟间隔的PV有功功率预测来安排电容器组和有载分接开关。在第二层中,基于10分钟间隔的PV有功功率预测来调度PV逆变器和静态同步补偿器(STATCOM)。考虑到计算量和通信延迟,在第三层中,光伏逆变器和STATCOM继续通过本地方法响应实时光伏有功功率。为了提高集中式方法的应用性能,在第一控制层中应用模型预测控制以增强控制的鲁棒性。灵敏度分析用于减少第二层的优化时间。仿真结果表明,所提出的VVC策略对于确保光伏集群在安全范围内的电压并改善整个光伏集群的SVS是有效的。 (C)2019 Elsevier Ltd.保留所有权利。

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