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Hierarchical voltage imbalance control for single-/three-phase hybrid multimicrogrid

机译:单相/三相混合微电网的分级电压不平衡控制

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摘要

With the rapid development of distributed generation (DG), microgrids and multimicrogrids (MMGs) appear at the end of distribution networks. For the islanded operation of a single-/three-phase hybrid MMG, a hierarchical coordinated control scheme is proposed in this study that includes primary and secondary levels. A compound control strategy based on quasi-proportional resonant and robust control is proposed for the primary voltage/frequency control to suppress voltage fluctuations caused by sudden changes in load power and DG output power; a coordinated strategy regarding tie-line power at the point of common coupling (PCC) is proposed for the secondary control to simultaneously improve voltage imbalance at the terminal of the master power supply, PCC, and load terminal. The proposed hierarchical coordinated control scheme is compared with conventional proportional-integral control and a control method based on the PCC to verify its performance. Test studies verify the superior robustness and voltage imbalance control performance of the proposed control scheme in coping with a sudden change in power and unbalanced loads.
机译:随着分布式发电(DG)的快速发展,微电网和多微电网(MMG)出现在配电网络的末端。对于单相/三相混合MMG的孤岛操作,本研究中提出了包括初级和次级级别的分层协调控制方案。针对一次电压/频率控制,提出了一种基于准比例谐振和鲁棒控制的复合控制策略,以抑制负载功率和DG输出功率突然变化所引起的电压波动。针对次级控制,提出了一种关于公共耦合点(PCC)的联络线功率的协调策略,以同时改善主电源,PCC和负载端子的电压不平衡。将提出的分层协调控制方案与常规比例积分控制和基于PCC的控制方法进行比较,以验证其性能。测试研究证明,所提出的控制方案具有出色的鲁棒性和电压不平衡控制性能,可应对功率突然变化和负载不平衡的情况。

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