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Distributed dynamic grid support using smart PV inverters during unbalanced grid faults

机译:在不平衡网格故障期间使用智能光伏反相器的分布式动态网格支持

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A dynamic voltage support strategy using smart photovoltaic (PV) inverters during unbalanced grid faults events is proposed. It uses Karush-Kuhn-Tucker condition for finding optimal solutions to calculate the inverter's active and reactive current references. The proposed methodology also takes the X/R ratio into consideration which allows the inverter to differentiate weak or strong grid conditions and adjust its reference currents. Existing multiple-complex coefficient-filter based phase locked loop is used to extract the positive and negative sequence components. The proposed strategy deploys existing dual vector current control to ensure optimal current injection and low voltage ride through. A distributed ride-through coordination approach among multiple inverters is also proposed based on different optimisation goals - either fundamental positive or fundamental negative sequence voltage support. The strategy is simulated, and inverter's transient performance is experimentally verified on a modified IEEE-13 bus test feeder using controller hardware-in-the-loop approach. Results show substantial evidence that the proposed method can be successfully applied to support the grid during an unbalanced fault event.
机译:提出了一种在不平衡网格故障期间使用智能光伏(PV)逆变器的动态电压支持策略。它使用Karush-Kuhn-Tucker条件来查找最佳解决方案,以计算变频器的主动和无功电流参考。所提出的方法还考虑了X / R比,这允许逆变器区分弱或强大的电网条件并调整其参考电流。现有的多复数系数滤波器基于锁相环锁相环用于提取正序和负序列组件。所提出的策略部署了现有的双矢量电流控制,以确保最佳的电流注入和低电压骑行。基于不同的优化目标,还提出了多个逆变器之间的分布式乘坐协调方法 - 基本的正或基本的负序电压支撑。模拟策略,使用控制器硬件循环方法在修改的IEEE-13总线测试馈线上通过实验验证策略。结果显示了实质性证据表明,在不平衡故障事件期间,可以成功应用所提出的方法以支持网格。

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