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Distributed layered control and stability analysis of islanded networked-microgrids

机译:孤岛网络微普林的分布式分层控制与稳定性分析

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Networked-microgrid (NMG) system has a much more complex structure with larger control difficulties and complicated dynamic behaviors. This paper firstly proposes a layered distributed control framework for NMG system, which is comprised of two layers: individual MG control layer and NMG control layer. The NMG control layer generates the voltage/frequency reference for the MG control layer. Particularly, to improve the system transient frequency response, each MG layer controller is designed to provide virtual inertia to the whole system. Secondly, a small-signal model for a generalized single-bus NMG system is derived to analyze the impact of coupling among MGs and various parameters on NMG dynamic stability. It reveals that the coupling relationship among MGs will weaken the stability of the whole NMG system while the proper control parameters can facilitate the stability. Besides, the delay effect on NMG system stability is also analyzed. Lastly, the proposed control framework and analytical result are verified by time-domain simulations under various cases considering various cases of load change, different virtual inertia and communication delay.
机译:网络 - 微电网(NMG)系统具有更复杂的结构,具有更大的控制困难和复杂的动态行为。本文首先提出了一种用于NMG系统的分层分布式控制框架,其由两层:单独的Mg控制层和NMG控制层组成。 NMG控制层产生MG控制层的电压/频率参考。特别是,为了提高系统瞬态频率响应,每个MG层控制器旨在为整个系统提供虚拟惯性。其次,导出了一种用于广义单总线NMG系统的小信号模型,以分析MGS之间耦合和各种参数对NMG动态稳定性的影响。它揭示了MGS之间的耦合关系将削弱整个NMG系统的稳定性,而适当的控制参数可以促进稳定性。此外,还分析了对NMG系统稳定性的延迟影响。最后,考虑各种载荷变化,不同的虚拟惯性和通信延迟,通过各种情况下通过时域模拟验证所提出的控制框架和分析结果。

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