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Secondary Restoration Control of Islanded Microgrids With a Decentralized Event-Triggered Strategy

机译:分散事件触发策略对孤岛微电网的二次恢复控制

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Distributed cooperative control methods attract more and more attention in microgrid secondary control because they are more reliable and flexible. However, the traditional methods rely on the periodic communication, which is neither economic nor efficient due to its large communication burden. In this paper, an event-triggered-approach-based distributed control strategy is used to deal with the secondary frequency and voltage control in the islanded microgrid. By using the outputs of estimators, which are reset to the actual values only at the event-triggered time, to replace the actual values in the feedback control laws, the proposed control strategies just require the communication between distributed secondary controllers at some particular instants while having frequency and voltage restoration function and accurate active power sharing. The stability and interevent interval are also analyzed in this paper. An islanded microgrid test system is built in PSCAD/EMTDC to validate the proposed control strategies. It shows that the proposed secondary control strategies based on the event-triggered approach can highly reduce the interagent communication.
机译:分布式协同控制方法更加可靠,灵活,因此在微电网二次控制中越来越受到关注。然而,传统方法依赖于周期性通信,由于其巨大的通信负担,这既不经济也不高效。本文采用基于事件触发方法的分布式控制策略来处理孤岛微电网的二次频率和电压控制。通过使用估计器的输出(仅在事件触发时才将其重置为实际值)来替换反馈控制律中的实际值,所提出的控制策略仅要求分布式辅助控制器之间在某些特定时刻进行通信,而同时具有频率和电压恢复功能以及准确的有功功率分配。本文还分析了稳定性和事件间隔。在PSCAD / EMTDC中构建了一个孤岛微电网测试系统,以验证所提出的控制策略。结果表明,基于事件触发方法的二级控制策略可以大大减少代理之间的通信。

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