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Coordinated control for medium voltage DC distribution centers with flexibly interlinked multiple microgrids

机译:用于中电压直流配电中心的协调控制,具有灵活的互连多微电网

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From flexible interconnection among feeders to hybrid alternating current (AC) and direct current (DC) distribution structures of future smart distribution systems, medium-voltage DC distribution centers with flexibly interlinked multiple microgrids (MGs) will have wide applications on the demand side. A generic coordinated control framework based on a distributed cooperation scheme is proposed for such DC centers, as opposed to centralized control structures. A novel unified control only using local measurements is proposed for these interlinking converters. During normal power disturbances, automatic coordinated power control and mutual support among sub-systems can be realized, thereby improving DC voltage and AC frequency stability to enable multiple MGs to be treated as a real unified cluster. Moreover, with this method, interlinking converters can realize seamless transition in power dispatching mode, common DC bus voltage control mode, and MG support mode without communication and control system switching. A simplified dynamic model has been developed to verify the proposed control strategy. This work is expected to provide a new solution for flexible interconnection and operational control of large-scale MG clusters.
机译:从饲料器之间的柔性互连到混合动力交流(AC)和未来智能配电系统的直流(DC)分布结构,具有灵活的互连多微电网(MGS)的中电压DC分布中心将在需求方面具有广泛的应用。提出了一种基于分布式合作方案的通用协调控制框架,而是为这些DC中心提出,而不是集中控制结构。仅针对这些互连转换器提出了仅使用本地测量的新颖统一控制。在正常功率扰动期间,可以实现自动协调功率控制和子系统之间的相互支持,从而提高DC电压和交流频率稳定性,以使多个MGS被视为真实的统一簇。此外,通过这种方法,互连转换器可以实现功率调度模式,公共直流总线电压控制模式和MG支持模式的无缝过渡,而无需通信和控制系统切换。已经开发了一种简化的动态模型来验证所提出的控制策略。这项工作有望为大型MG集群的灵活互连和操作控制提供新的解决方案。

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