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Consensus-based distributed coordinated control for Islanded DC microgrids

机译:基于共识的孤岛直流微电网分布式协调控制

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In this paper, a distributed coordinated control strategy between the energy storage units (ESUs) and the photovoltaic (PV) units in a dc microgrid has been proposed. Hierarchical control for the multiple ESUs has been adopted. In the primary level, an adaptive droop control is introduced, with the droop gains automatically regulated according to the state of charge (SOC) and the rated power of the ESUs. In the secondary level, distributed cooperative control based global dc voltage recovery and current sharing improvement has been presented. As another main contribution, a strategy for the coordinated operation of the ESUs and the PV units is proposed. Based on this strategy, the PV unit can change its control mode smoothly and flexibly to guarantee the stable operation of the dc microgrid in case of emergency conditions. The proposed distributed cooperative control strategy for the dc microgrid has been verified by a low-voltage islanded dc microgrid prototype.
机译:本文提出了直流微电网中储能单元(ESU)和光伏单元(PV)之间的分布式协调控制策略。已采用对多个ESU的分层控制。在初级阶段,引入了自适应下垂控制,其下垂增益根据充电状态(SOC)和ESU的额定功率自动调节。在次级方面,已经提出了基于分布式协作控制的全局直流电压恢复和电流共享改进。作为另一个主要贡献,提出了ESU和PV单元协调运行的策略。基于此策略,光伏单元可以平滑,灵活地更改其控制模式,以确保紧急情况下直流微电网的稳定运行。直流微电网的分布式协同控制策略已通过低压孤岛直流微电网原型进行了验证。

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