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Research on Frequency Control of Islanded Microgrid with Multiple Distributed Power Sources

机译:多个分布式电源的岛状微电网频率控制研究

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摘要

At present, some achievements have been made in the research on the energy management of microgrid operation. However, the research is mainly on the operation of grid-connected microgrid, while the research on the energy management of islanded microgrid is still relatively few. Frequency is one of the characteristics that affects the reliability and power quality of the microgrid. The essence of controlling frequency stability is to maintain source-load balance and redistribution of active power. Therefore, this paper proposes a frequency control strategy based on dynamically cutting machine to reduce load by analyzing the use priority of different distributed power supply and the division of load importance degree, and combining the influence degree of different frequency variation range on microgrid. To coordinate and control distributed power supply, energy storage device, and load in different frequency change areas, this paper proposes different control strategies. The seed strategies of the control strategy are discussed one by one. Experimental results show that the frequency control strategy can significantly improve the frequency stability of the power supply system and reduce the operating cost of islanded microgrid.
机译:目前,在微电网运行的能源管理研究中取得了一些成就。然而,该研究主要是关于网格连接的微电网的运行,而岛屿微电网的能量管理的研究仍然相对较少。频率是影响MicroGrid的可靠性和功率质量的特性之一。控制频率稳定性的本质是保持源负载平衡并重新分配有源电力。因此,本文提出了一种基于动态切割机的频率控制策略,通过分析不同分布式电源的使用优先级和负载重要程度的使用优先级来减少负载,并将不同频率变化范围的影响程度组合在微电网上。本文提出了不同频率变化区域的分布式电源,能量存储装置和负载,提出了不同的控制策略。控制策略的种子策略是一个接一个地讨论的。实验结果表明,频率控制策略可以显着提高电源系统的频率稳定性,降低岛状微电网的运营成本。

著录项

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 22:07:34

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