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首页> 外文期刊>IEEE Transactions on Industry Applications >Improvement of Stability Margin of Droop-Based Islanded Microgrids by Cascading of Lead Compensators
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Improvement of Stability Margin of Droop-Based Islanded Microgrids by Cascading of Lead Compensators

机译:通过铅补偿器级联改进下垂的岛状微电网的稳定性余量

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摘要

Microgrids are systems consisting of local generators based on renewable energy sources, energy storage elements, and loads. Such systems can be operated in grid connected and/or islanded modes. The islanded mode of operation is known to offer challenges in terms of stability. The work presented in this paper demonstrates a technique to enhance the stability margin of an islanded ac microgrid. Lead compensators are cascaded in series in the real power-frequency droop control of the distributed generators. This modification results in increased stability margin of the system. The study also investigates the possible limit upto which the stability margin can be increased. The effectiveness of the proposed technique is demonstrated through eigenvalue analysis and simulations on two systems: A low voltage islanded microgrid (system-1) and the islanded IEEE 33 bus system (system-2). Experimental results on a laboratory scale microgrid confirm the findings of the proposed strategy.
机译:微电网是由基于可再生能源,能量存储元件和负载的本地发电机组成的系统。这种系统可以在网格连接和/或岛状模式中操作。已知岛屿的操作模式在稳定方面提供挑战。本文提出的工作证明了一种增强岛立的AC微电网的稳定性余量的技术。引线补偿器在分布式发电机的实际功率下降控制中串联串联。该修改导致系统的稳定性裕度增加。该研究还调查了可以增加稳定性余量的可能限制。通过两个系统的特征值分析和模拟证明了所提出的技术的有效性:低压岛状微电网(System-1)和岛立的IEEE 33总线系统(系统-2)。实验室规模微电网的实验结果证实了拟议的策略的结果。

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