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Adaptive Droop-Based Active Power Curtailment Method for Overvoltage Prevention in Low Voltage Distribution Network

机译:基于自适应下垂的电力电力缩减方法,用于低压配电网过电压预防

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Clean energy incentives and the continuous fall in the cost of photovoltaic (PV) installations have led to a steady growth in residential PV systems. One of the main consequences of this high PV penetration in low voltage (LV) distribution networks is the overvoltage issue. Active power curtailment of PV inverters has been previously used to curtail the output power of the inverters below its operating point to prevent such overvoltages. This technique, however, uses a constant droop-based approach to curtail the power, based on the difference between the measured voltage and a critical voltage level. In this paper, this technique is implemented in a typical LV distribution network in North America with high PV penetration level. The simulation results show that the system undergoes excessive curtailment resulting in unnecessary energy loss. An adaptive droop-based approach using adaptive dynamic programming (ADP) is proposed as a possible solution to minimize the total energy loss in the system while keeping the system voltage under the critical operating limits. The energy loss due to curtailment has decreased by 25% after implementing the adaptive-droop based approach using ADP.
机译:清洁能量激励措施和光伏(PV)安装成本的连续下降导致住宅光伏系统的稳定增长。在低压(LV)分配网络中这种高光伏渗透的主要后果之一是过压发行。 PV逆变器的有效功率缩减先前已用于缩小其操作点以下逆变器的输出功率,以防止这种过电压。然而,这种技术使用基于恒定的下垂的方法来限制功率,基于测量电压和临界电压电平之间的差异。在本文中,该技术在北美的典型LV分配网络中实现,具有高PV渗透水平。仿真结果表明,该系统经历过度缩减,导致不必要的能量损失。使用自适应动态编程(ADP)的基于自适应下垂的方法是可能的解决方案,以最小化系统中的总能量损失,同时保持系统电压在关键操作限制下。使用ADP实施基于Adaptive-Droop的方法后,由于缩减导致的能量损失降低了25%。

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