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Analysis of common-mode voltages in flexible DC system with single-pole grounded fault

机译:单极接地故障的柔性直流系统共模电压分析

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In some flexible DC transmission systems with certain grounding modes, single-pole grounded faults won't cause large fault current. If the system keeps operating and clears the fault in time, the power supply reliability of the system will be greatly improved. SVPWM is widely used in the converter. However, the SVPWM will generate third harmonic voltage in the system. Firstly, the topology of multi-terminal flexible DC transmission system including structures and grounding modes is discussed. Subsequently, a common-mode equivalent circuit mode for analyzing the influence of third harmonic voltage is established. Thirdly, the formula for calculation of the third harmonic voltage and current is derived. The fault characteristics are also analyzed and a diagnostic method of fault location is proposed. Finally, the simulation experiments are made in PSCAD/EMTDC. The simulation results show that the proposed protection strategies can accurately locate the fault line after pole-to-ground fault occurs.
机译:在某些具有某些接地模式的柔性直流输电系统中,单极接地故障不会引起大故障电流。如果系统保持运行状态并及时清除故障,将大大提高系统的供电可靠性。 SVPWM在转换器中被广泛使用。但是,SVPWM将在系统中生成三次谐波电压。首先,讨论了包括结构和接地方式的多终端柔性直流输电系统的拓扑结构。随后,建立用于分析三次谐波电压影响的共模等效电路模式。第三,推导了三次谐波电压和电流的计算公式。分析了故障特征,提出了故障定位的诊断方法。最后,在PSCAD / EMTDC中进行了仿真实验。仿真结果表明,提出的保护策略能够在发生对地故障后准确定位故障线路。

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