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A permanent fault identification method for single-pole grounding fault of overhead transmission lines in VSC-HVDC grid based on fault line voltage

机译:基于故障线电压的VSC-HVDC电网架空输电线路单极接地故障的永久性故障识别方法

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In this paper, a permanent fault identification method for single-pole grounding fault of overhead transmission lines in VSC-HVDC grid based on fault line voltage is proposed. First, the working principle of the hybrid direct breaker circuit breaker (DCCB) and the discharge process of the internal capacitor of the hybrid DCCB are analyzed. Then, the transient processes of the fault line voltage under the conditions of permanent fault and transient fault are analyzed after reclosing the isolation switch of the DCCB on one side of the fault line. According to the difference of the fault line voltage under the conditions of permanent fault and transient fault, a permanent fault identification method for single-pole grounding fault of overhead transmission lines is proposed. The process of the identification will not affect the operating state of each converter in VSC-HVDC grid and it will not cause another fault impact to the system. Finally, a model of four-terminal VSC-HVDC system based on the modular multilevel converter (MMC) is built in PSCAD and the simulation results verify the feasibility and accuracy of this method.
机译:提出了一种基于故障线电压的VSC-HVDC电网架空输电线路单极接地故障的永久性故障识别方法。首先,分析了混合直流断路器(DCCB)的工作原理以及混合直流断路器内部电容器的放电过程。然后,在闭合故障线一侧的DCCB隔离开关后,分析了永久故障和瞬态故障条件下故障线电压的瞬态过程。针对永久性故障和暂态故障条件下故障线电压的差异,提出了架空输电线路单极接地故障的永久性故障识别方法。识别过程不会影响VSC-HVDC电网中每个转换器的运行状态,也不会对系统造成其他故障影响。最后,在PSCAD中建立了基于模块化多电平转换器(MMC)的四端VSC-HVDC系统模型,仿真结果验证了该方法的可行性和准确性。

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