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An Improved DC Fault Protection Algorithm for MMC HVDC Grids Based on Modal-Domain Analysis

机译:基于模态域分析的MMC HVDC网格改进直流故障保护算法

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摘要

To detect the dc faults for the modular multilevel converter (MMC)-based dc grids using overhead line transmission, many protection methods in phase-domain have been proposed. These existing protection methods suffer from incomplete function, weak theoretical basis, and sensitivity to fault resistance and noise disturbance. To overcome these shortcomings, this article proposes an improved dc fault protection algorithm using the modal-domain approach for the MMC-based overhead dc grids, which decouples the interaction between positive and negative poles and mitigates the strong frequency dependence of the characteristic impedance in phase-domain. The dc fault equivalent circuits are established in modal-domain and the fault characteristics during the initial stage are analyzed. Based on the modal-domain analysis, the line-mode reactor voltage which combines the fault characteristics of negative and positive reactor voltages is used to identify the internal faults. The zero-mode reactor voltage which enlarges the differences between faulty and healthy poles is used to select the faulted pole. This method is robust to fault resistance and noise with high detection speed. In addition, it is not affected by power reversal, ac faults, and dc circuit breaker (DCCB) operation, which are validated and evaluated by the simulations in PSCAD/EMTDC.
机译:为了检测模块化多电平转换器(MMC)的DC故障,使用架空线路传输,已经提出了相位域中的许多保护方法。这些现有的保护方法遭受不完全的函数,薄弱的理论基础和对容错和噪声干扰的敏感性。为了克服这些缺点,本文采用了一种改进的DC故障保护算法,使用基于MMC的开销直流网格的模域方法,该模域方法将正极和负极之间的相互作用分离,并降低了相位特征阻抗的强频率依赖性-领域。 DC故障等效电路在模域建立,分析了初始阶段期间的故障特性。基于模态 - 域分析,使用与正反应器电压的故障特性相结合的线路模式电压电压来识别内部故障。放大故障和健康杆之间的差异的零模式电压电压用于选择故障杆。这种方法对具有高检测速度的故障和噪声具有鲁棒性。此外,它不受电源反转,交流故障和直流断路器(DCCB)操作的影响,这些操作被PSCAD / EMTDC中的模拟验证和评估。

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