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Commutation Failures Caused by DC Line Faults in Double-Circuit LCC-HVDC Transmission Lines

机译:双回路LCC-HVDC输电线路由直流线路故障引起的换向故障

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The mechanism of commutation failure (CF) caused by dc line faults in double-circuit LCC-HVDC transmission lines is investigated in this paper. Fault analysis for double-circuit HVDC transmission lines is given to present the current increase at inverter side. The commutation process is also demonstrated to further investigate the CF problems. Then, the transient performance of conventional control system at inverter side is discussed in case of current fluctuation. It indicates that conventional control system is incapable of resisting CF by steep current increase. Therefore, an improved control scheme is developed based on the current prediction to mitigate CF by transient current increase. Simulation results show the proposed control method has the ability to reduce the CF risk effectively in most cases.
机译:研究了双回路LCC-HVDC输电线路中直流线路故障引起的换相故障(CF)机理。给出了双回直流输电线路的故障分析,以显示逆变器侧的电流增加。还演示了换向过程,以进一步研究CF问题。然后,讨论了电流波动情况下逆变器侧常规控制系统的瞬态性能。这表明常规控制系统无法通过陡峭的电流增加来抵抗CF。因此,基于电流预测来开发改进的控制方案以通过瞬变电流增加来减轻CF。仿真结果表明,所提出的控制方法能够在大多数情况下有效降低CF风险。

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