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Two-stage voltage control strategy for PV plants based on variable droop control

机译:基于可变下垂控制的光伏电站两阶段电压控制策略

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摘要

Voltage violation is an important factor that restricts grid-connected photovoltaic system. The utilization of PV plant's reactive power capability is an effective measure to mitigate voltage violation. This paper proposes two-stage voltage control strategy to enhance the voltage support capability of photovoltaic grid-connected system. In first stage, adaptive gains are set according to the maximum reactive capacity of each PV plant in order to distribute reactive power among PV plants more reasonably, avoiding certain PV plants operating in the limit state for a long time. In second stage, when the reactive power capacity is insufficient, the priority of active power curtailment for each PV plant is calculated in real time. Active power curtailment control will be performed in PV plants with high priority to released more reactive power capacity for voltage support. The simulation results carried out by PSCAD/EMTDC software demonstrated that this strategy can effectively solve the voltage violation problem. Meanwhile, the proposed strategy not only can exploit reactive capacity of each PV plant as much as possible to avoid certain PV plants operating in the limit state for a long time, but also can reduce the amount of active power curtailment when reactive power adequacy is insufficient.
机译:违反电压是限制并网光伏系统的重要因素。利用光伏电站的无功功率能力是缓解电压违规的有效措施。本文提出了两阶段的电压控制策略,以提高光伏并网系统的电压支持能力。在第一阶段,根据每个光伏电站的最大无功容量设置自适应增益,以便更合理地在光伏电站之间分配无功功率,避免某些光伏电站长时间处于极限状态。在第二阶段,当无功功率不足时,将实时计算每个光伏电站削减有功功率的优先级。将在光伏电站中优先执行有功功率削减控制,以释放更多的无功功率容量以支持电压。 PSCAD / EMTDC软件进行的仿真结果表明,该策略可以有效解决电压违规问题。同时,提出的策略不仅可以最大程度地利用每个光伏电站的无功容量,避免某些光伏电站长时间处于极限状态运行,而且还可以减少无功功率不足时的有功功率削减量。 。

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