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Real-Time Local Volt/Var Control Under External Disturbances With High PV Penetration

机译:具有高PV穿透性的外部干扰下的实时本地电压/电压控制

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Volt/var control (VVC) of smart PV inverter is becoming one of the most widely used solutions to address the voltage challenges associated with high PV penetration. This paper focuses on the local droop VVC recommended by the grid integration standards IEEE1547, rule21, and addresses their major challenges, i.e., appropriate parameters selection under changing conditions, and the control being vulnerable to instability (or voltage oscillations) and significant steady state error (SSE). This is achieved by proposing a two-layer local real-time adaptive VVC that has two major features: 1) it is able to ensure both low SSE and control stability simultaneously without compromising either, and 2) it dynamically adapts its parameters to ensure good performance in a wide range of external disturbances such as sudden cloud cover, cloud intermittency, and substation voltage changes. A theoretical analysis and convergence proof of the proposed control is also discussed. The proposed control is implementation friendly as it fits well within the integration standard framework and depends only on the local bus information. The performance is compared to existing droop VVC methods in several scenarios on a large unbalanced 3-phase feeder with detailed secondary side modeling.
机译:智能光伏逆变器的电压/无功控制(VVC)成为解决与高PV渗透相关的电压挑战的最广泛使用的解决方案之一。本文重点关注电网集成标准IEEE1547,rule21建议的局部下降VVC,并解决它们的主要挑战,即在变化的条件下进行适当的参数选择,并且该控制容易受到不稳定(或电压振荡)和严重的稳态误差的影响。 (SSE)。通过提出具有两个主要功能的两层本地实时自适应VVC,可以实现此目的:1)能够同时确保低SSE和控制稳定性而不会损害两者; 2)动态调整其参数以确保良好的性能。在突然的云层覆盖,云间断和变电站电压变化等各种外部干扰下的性能。还讨论了所提出控制的理论分析和收敛证明。拟议的控制措施易于实施,因为它非常适合集成标准框架,并且仅取决于本地总线信息。在具有详细次级侧建模的大型不平衡三相馈线上的几种情况下,将性能与现有的下垂VVC方法进行了比较。

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