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Secondary control in AC microgrids challenges and solutions

机译:AC微电网的二次控制面临的挑战和解决方案

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The hierarchical control structure of a microgrid can be described as consisting of four levels: processing, sensing and adjusting, monitoring and supervising, and maintenance and optimizing. This paper focuses on the secondary control level, which can be classified as centralized or decentralized control. A comprehensive investigation of both centralized and decentralized control is presented in this paper. Decentralized control is proposed in order to deal with some of the disadvantages of central control, such as the high risk of unplanned interruption arising from a Microgrid Central Controller (MGCC) malfunction. However, decentralized control is not yet complete, and some challenges to its implementation remain. This paper also looks at these challenges and proposes some solutions that may help to improve the performance of decentralized control and overcome its disadvantages. Finally, a general methodology of microgrid control is modeled.
机译:微电网的分层控制结构可以描述为包括四个级别:处理,感测和调整,监视和监督以及维护和优化。本文着重于次级控制级别,可以将其分为集中控制或分散控制。本文对集中控制和分散控制进行了全面的研究。为了解决中央控制的一些缺点,例如,由于微电网中央控制器(MGCC)故障而导致计划外中断的高风险,提出了分散控制。但是,分散控制尚未完成,其实施仍然面临一些挑战。本文还着眼于这些挑战并提出了一些解决方案,这些解决方案可能有助于提高分散控制的性能并克服其缺点。最后,对微电网控制的通用方法进行了建模。

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