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Adaptive control of distributed generation for microgrid islanding

机译:微电网孤岛的分布式发电自适应控制

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A microgrid (MG) is supposed to operate in both grid-tied mode and islanded mode, smooth transition between which is critical for its reliability. Past efforts have shown that proper control of converter-interfaced distributed generation (DG) units can help maintain stability of MG against islanding. However, it remains unknown as how to quantify and when to initialize such controls. This paper presents a novel DG control strategy for MG islanding purpose using phasor measurements at point of common coupling. During the transition, the proposed controller adjusts DG outputs adaptively to compensate for system power imbalance. To verify the proposed method, a full MG dynamic model with different types of DGs is developed in PSCAD/EMTDC. Case studies demonstrate the advantages of the proposed method in improving load sharing, transient issues and system stability during MG islanding.
机译:微电网(MG)应该在并网模式和孤岛模式下运行,两者之间的平稳过渡对其可靠性至关重要。过去的努力表明,对转换器接口的分布式发电(DG)单元进行适当的控制可以帮助维护MG防止孤岛的稳定性。但是,如何量化以及何时初始化此类控件仍然未知。本文提出了一种新颖的DG控制策略,该算法通过在公共耦合点进行相量测量来实现MG孤岛化。在过渡期间,建议的控制器自适应地调整DG输出,以补偿系统功率不平衡。为了验证所提出的方法,在PSCAD / EMTDC中开发了具有不同类型DG的完整MG动态模型。案例研究证明了该方法在改善MG孤岛期间的负载共享,暂态问题和系统稳定性方面的优势。

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