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A MAS and CA Reactive Power Control for Islanded Multi-microgrid

机译:孤岛微电网的MAS和CA无功控制

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At present, multi-microgrid voltage and reactive power control research is still a bottleneck. Based on this, the paper studied the voltage and reactive power control methodology of multi-microgrid in an island mode, analyzed the current multi-microgrid voltage and reactive power control strategy.The key contribution of this paper is to capture the superiority of Multi-agent systems in collaborating with each sub-microgrid and the advantage of cellular automata model in monitoring solitary erupted inside the microgrid reactive voltage change to propose islanded mode voltage and reactive power control strategy,which is based on a distributed multi-agent coordination model constructed in the paper.Finally, it has verified that this method can solve the multi-microgrid voltage and reactive power control problem in the islanded mode effectively through PSCAD / EMTDC simulation.But in the simulation,an real-time monitoring for micro-cellular source and a large number of experimental data is a must to prove the relationship between the sub-micro-grid, so the task is tough relatively.
机译:目前,多微电网电压和无功控制研究仍是瓶颈。在此基础上,本文研究了孤岛模式下多微电网的电压和无功控制方法,分析了当前多微电网的电压和无功控制策略。本文的主要贡献在于抓住了多电网的优越性。 Agent系统与每个亚微电网协同工作,并利用元胞自动机模型监测微电网内部孤立发生的无功电压变化的优势,提出了孤岛模式电压和无功功率控制策略。最后,通过PSCAD / EMTDC仿真,验证了该方法可以有效地解决孤岛模式下的多微电网电压和无功控制问题。要证明亚微电网之间的关系,必须有大量的实验数据,因此任务相对艰巨。

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