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Distributed Event-Triggered Consensus-Based Control for Current Sharing and Voltage Stabilization of DC Microgrids

机译:基于事件触发的基于事件的基于共识的控制,用于DC微电网的电流共享和电压稳定

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In this paper, the problem of distributed event-based control of large scale power systems is addressed. Towards this end, a Direct Current (DC) microgrid that is composed of multiple interconnected Distributed Generation Units (DGUs) is considered. Voltage stability is guaranteed by utilizing decentralized local controllers for each DGU. A distributed discrete-time event-triggered (ET) consensus-based control strategy is then designed for current sharing in the DGUs. In this mechanism, the transmissions occur while a specified event is triggered to prevent unessential utilization of communication resources. The asymptotic stability of the ET-based controller is shown formally by using Lyapunov stability via linear matrix inequality (LMI) conditions. The effectiveness of the proposed methodology is demonstrated and substantiated in simulation case study.
机译:本文解决了大规模电力系统的分布式事件控制问题。朝向此结束,考虑由多个互连的分布生成单元(DGU)组成的直流电流(DC)微电网。利用每个DGU利用分散的本地控制器,可以保证电压稳定性。然后,为DGU中的电流共享设计了一种分布式离散时间事件触发(ET)基于共识的控制策略。在该机制中,传输在触发指定的事件以防止不必要地利用通信资源时发生。通过使用Lyapunov稳定性通过线性矩阵不等式(LMI)条件,正式地示出了基于ET的控制器的渐近稳定性。在模拟案例研究中证明和证实了所提出的方法的有效性。

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