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Influence of capacitor-buffered hybrid DC circuit breaker on bipolar short circuit fault of three-terminal MMC-HVDC transmission system

机译:电容器缓冲混合直流断路器对三端MMC-HVDC传输系统双极短路故障的影响

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The flexible DC transmission system needs a DC circuit breaker to remove and isolate the bipolar short-circuit fault to prevent the excessive short-circuit current from damaging the DC transmission system. In this paper, a comprehensive model of DC circuit breaker and transmission system is established by using PSCAD based on capacitive buffered hybrid DC circuit breaker. The short-circuit current waveform and DC port voltage waveform of the three-terminal ± 350?kV flexible DC transmission system under the condition of double-pole short-circuit fault at the DC side of rectifier station are simulated and calculated. The simulation results show that the maximum current and voltage of the capacitor-buffering hybrid DC circuit breaker model is lower than that of the ideal DC circuit breaker model under the condition of bipolar short-circuit fault at the DC side of the rectifier station. The system fault waveform under different parameters of capacitor-buffered hybrid DC circuit breaker is compared and analyzed through simulation, so as to optimize the parameters of circuit breaker. It can be seen that the actual results more in line with the switching process can be obtained by using the capacitor buffer type hybrid DC circuit breaker.
机译:柔性直流传输系统需要DC断路器,以拆下并隔离双极短路故障,以防止过度短路电流损坏直流传输系统。本文采用PSCAD基于电容缓冲混合直流断路器,建立了DC断路器和传输系统的综合模型。模拟和计算了三端子±350 kV柔性直流传输系统的三端±350 kV柔性直流传输系统的短路电流波形和直流端口电压波形。仿真结果表明,电容器缓冲混合动力直流断路器模型的最大电流和电压低于整流站DC侧的双极短路故障条件下理想直流断路器模型的最大电流和电压。比较和通过仿真进行比较和分析电容缓冲混合直流断路器不同参数下的系统故障波形,从而优化断路器的参数。可以看出,通过使用电容器缓冲型混合直流断路器可以获得与开关过程更多的实际结果。

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