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Enhanced Consensus-based Distributed Control for Accurate Reactive Power Sharing of Islanded Microgrids Without LBC lines

机译:增强的基于共识的分布式控制,可在没有LBC线路的情况下对孤岛微电网进行准确的无功功率共享

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Microgrid is widely used in recent years, which can operate in grid-connected mode or islanded mode. For the islanded microgrid, one essential task is the accurate power sharing. With the hierarchical control, which is widely used in the microgrids, the active power sharing can be achieved accurately. However, due to the mismatched line impedances, the performance of the reactive power sharing is poor. In order to share the reactive power accurately, in this paper, a new control strategy, named enhanced consensus-based distributed control, is proposed, which introduces the consensus distribute protocol and the band-pass filter (BPF) into the typical hierarchical control. For the proposed strategy, the consensus distribute protocol is introduced to adaptively regulate the virtual impedance and share the reactive power accurately. Moreover, since the low band-width communication is usually needed in the hierarchical control, which can degrade the performance of the system, the BPF is applied in this paper without any communication lines and any control loops. Finally, simulation results are provided to confirm the validity and effectiveness of the proposed control strategy for the reactive power sharing in islanded MG.
机译:近年来,微电网被广泛使用,它可以在并网模式或孤岛模式下运行。对于孤岛微电网,一项重要任务是精确的功率共享。通过在微电网中广泛使用的分级控制,可以精确地实现有功功率共享。然而,由于线路阻抗不匹配,无功功率共享的性能很差。为了精确地共享无功功率,本文提出了一种新的控制策略,即基于共识的增强型分布式控制,该协议将共识性分配协议和带通滤波器(BPF)引入了典型的分层控制中。对于所提出的策略,引入了共识分配协议以自适应地调节虚拟阻抗并准确地共享无功功率。此外,由于在分级控制中通常需要低带宽通信,这可能会降低系统性能,因此在本文中应用了BPF,而没有任何通信线路和控制环。最后,提供了仿真结果,以确认所提出的孤岛MG无功功率共享控制策略的有效性和有效性。

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