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An Integrated Automatic Control System for Distributed Generation Hierarchical Islanding

机译:分布式发电分层孤岛集成自动控制系统

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The penetration of distributed generation causes unintentional islanding, failure of re-closing, unsynchronized re-closing, etc. Existing anti-islanding techniques can be susceptible to common mode tripping, which could decrease the stability of total system and increase the requirement for secure spinning reserve. The strategy of hierarchical islanding of DG is described in this paper, which includes Mini Islanding and Substation Islanding. The main purposes of hierarchical islanding are to achieve stable islanding and utilize the DG contribution to system availability under conditions of major system disturbance. Substation Islanding is the first choice. When the inter-ties faults occur, the Substation Island is split from the grid and achieves stable islanding. If the stable islanding can not be obtained, the Substation Island would split into several Mini Islands. A hierarchical distributed control system integrated splitting, realtime load shedding and resynchronization is introduced to maintain stability of hierarchical islanding.
机译:分布式发电的渗透会导致无意的岛屿,重新结束的失败,不同步的重新关闭等。现有的反孤岛技术可以容易受到共模绊倒的影响,这可以降低总系统的稳定性,并增加安全纺丝的要求预订。本文描述了DG的分层岛屿战略,包括迷你岛和变电站岛屿。等级孤岛的主要目的是实现稳定的岛屿,并利用DG在主要系统干扰条件下对系统可用性的贡献。变电站岛是第一选择。发生界面断层时,变电站岛与电网分开并实现稳定的岛屿。如果无法获得稳定的岛屿,则变电站岛将分成几个迷你岛。引入了分层分布式控制系统集成拆分,实时加载脱落和重新同步以保持分层孤岛的稳定性。

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