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首页> 外文期刊>IEEE Transactions on Power Systems >Asynchronous Periodic Distributed Event-Triggered Voltage and Frequency Control of Microgrids
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Asynchronous Periodic Distributed Event-Triggered Voltage and Frequency Control of Microgrids

机译:异步周期性分布式事件触发电压和微电网的频率控制

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In this paper, we introduce a distributed secondary voltage and frequency control scheme for an islanded ac microgrid under event-triggered communication. An integral type event-triggered mechanism is proposed by which each distributed generator (DG) periodically checks its triggering condition and determines whether to update its control inputs and broadcast its states to neighboring DGs. In contrast to existing event-triggered strategies on secondary control of microgrids, the proposed event-triggered mechanism is able to handle the consensus problem in case of asynchronous communication. Under the proposed sampled-data based event-triggered mechanism, DGs do not need to be synchronized to a common clock and each individual DG checks its triggering condition periodically, relying on its own clock. Furthermore, the proposed method efficiently reduces communication rate. We provide sufficient conditions under which microgrid's frequency and a critical bus voltage asymptotically converge to the nominal frequency and voltage, respectively. Finally, effectiveness of our proposed method is verified by testing different scenarios on an islanded ac microgrid benchmark in the MATLAB/Simulink environment as well as a hardware-in-the-loop (HIL) platform, where the physical system is modeled in the Opal-RT and the cyber system is realized in Raspberry Pis.
机译:在本文中,我们在事件触发通信下引入了岛立的AC微电网的分布式二次电压和频率控制方案。提出了一种积分类型的事件触发机制,通过该机制,每个分布式生成器(DG)周期性地检查其触发条件并确定是否更新其控制输入并将其状态广播到相邻的DG。与MicroGrids的二次控制的现有事件触发策略相比,所提出的事件触发机制能够在异步通信的情况下处理共识问题。在所提出的采样数据的基于事件触发机制下,DGS不需要与公共时钟同步,并且每个单独的DG定期检查其触发条件,依赖于其自己的时钟。此外,所提出的方法有效降低通信率。我们提供足够的条件,微电网的频率和临界总线电压分别渐近地收敛到标称频率和电压。最后,通过在Matlab / Simulink环境中的岛立的AC微电网基准测试中测试不同的场景以及硬件循环(HIL)平台来验证我们所提出的方法的有效性,其中物理系统在蛋白石中建模-RT和网络系统在覆盆子PI中实现。

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