弱并网条件下微电网负荷频率的优化模糊下垂控制器

Haider M. Jassim, A. Ziuzev
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引用次数: 0

摘要

微电网已被用于管理由大量集成分布式发电机组成的电网。如果没有适当的控制和管理机制,微电网的效率和可靠性可能会直线下降,进而影响并网关键负荷的运行。提出了一种模糊下垂控制器来维持微电网的有功功率和无功功率平衡,从而使频率保持在标称值。在此基础上,采用粒子群优化算法,根据一定的代价函数确定所使用控制器的最佳增益值。该控制方案应用于柴油发电机组和蓄电池系统,保证了对电网扰动的快速、充分的响应。此外,假设微电网与主电网之间存在弱连接,这将给所提出的控制技术带来更多挑战。对设计的有效性进行了评价,并与其他控制方案进行了比较。
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Optimized-Fuzzy Droop Controller for Load Frequency Control of a Microgrid with Weak Grid Connection and Disturbances
Microgrids have been used to manage the electricity grid with a large number of integrated distributed generators. Without a proper control and management mechanism, the Microgrid efficiency and reliability may plummet which will influence the operation of critical loads connected to the grid. A Fuzzy-Droop controller is proposed to maintain the active and reactive power balance in the Microgrid and, hence, maintain frequency at the nominal value. A particle swarm optimization algorithm is implemented over the proposed design to locate the best gain values of the utilized controllers according to a certain cost function. The proposed control scheme is applied to the diesel generator and battery system units which will guarantee a rapid and sufficient response to disturbances in the network. Furthermore, a weak connection between the Microgrid and the main electricity grid is assumed, which will add more challenges to the proposed control technique. The effectiveness of the design is evaluated and compared to other control schemes.
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