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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Simultaneous Implementation of LVRT Capability and Anti-Islanding Detection in Three-Phase Inverters Connected to Low-Voltage Grids
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Simultaneous Implementation of LVRT Capability and Anti-Islanding Detection in Three-Phase Inverters Connected to Low-Voltage Grids

机译:在低压电网连接的三相逆变器中同时实现LVRT功能和抗孤岛检测

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摘要

In the future, the provision of ancillary services in low-voltage grids will become more and more important. Low-voltage ride-through capability has been a requirement in medium- and high-voltage grids but will become mandatory even in low-voltage grids. There may be conflicts with existing requirements such as anti-islanding detection. This paper proposes a method that allows for both low-voltage ride-through capability and anti-islanding protection to be implemented simultaneously in three-phase inverters connected to low-voltage grids. This method uses constant voltage and frequency monitoring and reacts according to the relevant specific requirements. With the proposed method, inverters can contribute to system stability without the risk of unintentional islanding operation. The implementation of low-voltage ride-through capability is shown to even facilitate the detection of islanded grids. To prove the merit of this proposal, a model for a three-phase inverter is developed, which incorporates the proposed method and is successfully tested both in simulation and in experiments in the laboratory.
机译:将来,在低压电网中提供辅助服务将变得越来越重要。低压穿越能力一直是中高压电网的要求,但即使在低压电网中也将变得必不可少。可能与现有要求(例如防孤岛检测)发生冲突。本文提出了一种方法,该方法可以在连接到低压电网的三相逆变器中同时实现低压穿越能力和防孤岛保护。该方法使用恒定电压和频率监控,并根据相关的特定要求进行反应。利用所提出的方法,逆变器可以有助于系统的稳定性,而不会出现无意孤岛操作的风险。示出了低压穿越能力的实施甚至可以促进孤岛电网的检测。为了证明该建议的优点,开发了一种三相逆变器模型,该模型结合了所提出的方法,并在仿真和实验室实验中均成功进行了测试。

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