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首页> 外文期刊>IEEE Transactions on Power Delivery >Operating Region and Boundary Control of Modular Multilevel Converter Station Under Unbalanced Grid Conditions
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Operating Region and Boundary Control of Modular Multilevel Converter Station Under Unbalanced Grid Conditions

机译:不平衡网格条件下模块化多级转换站的操作区域和边界控制

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摘要

To determine the operating region of modular multilevel converter (MMC) station under unbalance grid conditions, this paper proposes the analytical and point-scanning methods. First, the imbalance of PCC voltages is expressed in terms of two proposed indexes for single phase fault (SPF), which can be directly calculated from the grid parameter and grounding impedance. Next, the algebraic equation to solve the PCC voltage for the given PCC power is presented. The existence of PCC voltage is considered as one constraint. Moreover, the other constraints for transformer rating, converter rating, ac current and output voltage are also analyzed to adapt the unbalance conditions. Based on the proposed method, the effect of the grid imbalance on the operating region of MMC is analyzed and then the common constraints to confine the operating region are determined. Following that, the boundary control is proposed to limit the operation of MMC on the boundary of the operating region under unbalanced conditions. The open and modular control structure allows more constraints to be considered for the boundary control. The simulation results validate the correctness of the proposed methods to define the operating region and the effectiveness of the boundary control.
机译:为了在不平衡网格条件下确定模块化多级转换器(MMC)站的操作区域,本文提出了分析和点扫描方法。首先,以两个提出的单相故障(SPF)的索引表示PCC电压的不平衡,其可以从网格参数和接地阻抗直接计算。接下来,提出了解决给定PCC电源的PCC电压的代数方程。 PCC电压的存在被认为是一个约束。此外,还分析了变压器额定值,转换器额定值,交流电流和输出电压的其他约束,以适应不平衡条件。基于所提出的方法,分析了网格不平衡对MMC的操作区域的影响,然后确定了限制操作区域的公共约束。在此之后,提出了边界控制来限制在不平衡条件下操作区域的边界上的MMC的操作。开放和模块化控制结构允许为边界控制考虑更多约束。仿真结果验证了所提出的方法来定义操作区域的正确性以及边界控制的有效性。

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