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Effect of converter DC fault on the transient stability of a Multi-Machine Power System with HVDC transmission lines

机译:换流器直流故障对具有高压直流输电线路的多机电力系统暂态稳定性的影响

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This paper deals with the effect of DC faults on the transient stability of a Multi-Machine Power System with two transmission line configurations; HVDC and a hybrid HVAC-HVDC transmission line. The faults are located at the DC terminals of the HVDC converter station. In order to carry out this study, two case studies are presented. In the first case study a double HVDC transmission line is used to transmit 2000MW to an area of the power system called Pookland which has a total load demand of 2440MW. In case two, a parallel hybrid HVAC-HVDC transmission line is used to transmit the same amount of power to Pookland. In both cases, the impact of a short term converter DC fault on the transient stability of the entire system was investigated. This was done by studying the response of the rotor angle of G2 in Pookland, G3 in the Bing Coal plant and the voltage profile at the terminals of the generators to the DC fault at the HVDC converter station. Amongst other results, it was established that in case 1 which has a double HVDC transmission line, the rectifier side (in the Bing coal plant) has less rotor angle oscillations when compared to the inverter side (in Pookland), but the rectifier side took longer than the inverter side for the rotor angle of the generators to stabilize. In case 2, the voltage at G2 in Pookland took six times the amount of time it took G3 in the Bing coal plant to stabilize while the voltage in the Bing Coal plant dipped by 0.35pu (smaller than case 1 which dipped by 0.4pu). In conclusion, the converter DC fault had a smaller impact on the transient stability of the Multi-Machine power system when the hybrid HVAC-HVDC transmission line was adopted.
机译:本文探讨了直流故障对具有两种传输线配置的多机电力系统暂态稳定性的影响。 HVDC和HVAC-HVDC混合传输线。故障位于HVDC换流站的DC端子上。为了进行这项研究,提出了两个案例研究。在第一个案例研究中,使用双HVDC输电线路将2000MW输电到电力系统Pookland区域,该区域的总负荷需求为2440MW。在第二种情况下,使用并行混合HVAC-HVDC传输线将相同数量的功率传输到Pookland。在这两种情况下,都研究了短期转换器直流故障对整个系统瞬态稳定性的影响。这是通过研究Pookland的G2转子角,Bing煤电厂的G3转子角以及发电机终端的电压曲线对HVDC换流站的DC故障的响应来完成的。在其他结果中,可以确定的是,在案例1中,它具有双HVDC输电线路,与逆变器侧(在Pookland中)相比,整流器侧(在Bing燃煤电厂中)具有较小的转子角振荡,但整流器侧占据了为了使发电机的转子角稳定,比变频器侧更长。在案例2中,Pookland的G2处的电压花费的时间是在Bing煤电厂中G3达到稳定所需时间的六倍,而Bing煤电厂的电压下降了0.35pu(小于案例1的0.4pu)。 。总之,采用混合HVAC-HVDC输电线路时,换流器直流故障对多机电力系统的暂态稳定性影响较小。

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