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Instability of PLL-Synchronized Converter-Based Generators in Low Short-Circuit Systems and the Limitations of Positive Sequence Modeling

机译:低短路系统中PLL同步转换器的发电机的不稳定性及正序列建模的限制

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The penetration of renewable energy resources, such as wind and solar, is continuously growing in power system grids and their interconnection in low short-circuit (LSC) systems (aka weak grids) is becoming more frequent. Converter interfaced resources have controls and dynamics that differ from traditional synchronous generators and require sufficient modeling for potential instabilities to be analyzed and prevented both in planning and operations environment. In this work, instability scenarios related to converter controls of wind turbine generators (WTGs) connected to LSC systems are analyzed, and the limitations of using positive sequence models in these scenarios are demonstrated. In addition, the influence of various converter control parameters on the WTG instability is investigated. The analysis is performed on a portion of the American Electric Power (AEP) network with several hypothetical renewable energy resources.
机译:可再生能源(如风和太阳)的渗透率在电力系统网格中不断增长,并且它们在低短路(LSC)系统(AKA弱网格)中的互连变得更加频繁。转换器接口资源具有与传统同步发电机不同的控制和动态,并且需要足够的建模,以便在规划和操作环境中分析和防止潜在的不稳定性。在这项工作中,分析了与连接到LSC系统的风力涡轮发电机(WTG)的转换器控制相关的不稳定场景,并证明在这些场景中使用正序列模型的限制。此外,研究了各种转换器控制参数对WTG不稳定性的影响。在具有多个假设可再生能源的美国电力(AEP)网络的一部分上进行分析。

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