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Event-triggered mechanism based distributed optimal frequency regulation of power grid

机译:基于事件触发机制的电网分布式最优频率调节

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摘要

Considering the limitation of communication network, the event-triggered mechanism based distributed optimal frequency regulation is proposed, which can restore the frequency and retain the economic efficiency of power grid simultaneously under certain load disturbances. Compared with the traditional distributed optimal frequency regulation based on continuous or periodic sampled-data information transmission mechanism, the communication burden among the areas in power grid is reduced since two novel types of event-triggered mechanisms, which possess the information demand-transmission property, are constructed and introduced in the regulation method in this study. Moreover, Zeno behaviour is proved to be avoided in order to guarantee the availability of event-triggered mechanisms in practical power grid. The effectiveness of theoretical result of this study is verified by the simulation study.
机译:考虑到通信网络的局限性,提出了一种基于事件触发机制的分布式最优频率调节方法,该方法可以在一定的负载扰动下同时恢复频率并保持电网的经济效益。与基于连续或周期性采样数据信息传输机制的传统分布式最优频率调节相比,由于两种新型的事件触发机制具有信息需求传输特性,因此减轻了电网区域之间的通信负担;本研究中的调节方法被构建并引入。此外,事实证明,为了确保事件触发机制在实际电网中的可用性,避免了芝诺行为。仿真研究验证了本研究理论结果的有效性。

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