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Distributed cooperative control system for smart microgrids

机译:智能微电网分布式协同控制系统

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This paper presents a decentralized control method for Electronically Interfaced Distributed Generations (EI-DGs) that controls their output frequencies, power generations, and voltages during grid-connected, islanding, and synchronizing modes. The proposed control system utilizes droop control to quickly balance generation and demand after sudden disturbances. It utilizes distributed cooperative control to stabilize the system frequency and voltage, and also to distribute the generation among DGs. Furthermore, the proposed control system adjusts the frequency and voltage to reconnect the microgrid to the main grid by utilizing only local measurements from the neighboring DGs. The proposed control system is verified on a modified IEEE Standard 399-1997 test system using MATLAB/SIMULINK and the advantages and disadvantages of the proposed method are discussed according to the results. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了一种用于电子接口分布式发电(EI-DG)的分散控制方法,该方法可在并网,孤岛和同步模式下控制其输出频率,发电量和电压。所提出的控制系统利用下垂控制来在突然干扰后快速平衡发电量和需求量。它利用分布式协作控制来稳定系统频率和电压,并在DG之间分配发电量。此外,提出的控制系统通过仅利用来自相邻DG的本地测量值来调整频率和电压,以将微电网重新连接到主电网。在改进的IEEE 399-1997测试系统上使用MATLAB / SIMULINK对所提出的控制系统进行了验证,并根据结果讨论了所提出方法的优缺点。 (C)2015 Elsevier B.V.保留所有权利。

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