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Impact of K-factor and active current reduction during fault-ride-through of generating units connected via voltage-sourced converters on power system stability

机译:通过电压源转换器连接的发电机组故障穿越期间的K因子和有功电流减小对电力系统稳定性的影响

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This study investigates the impact of the injection of additional reactive current and of active current reduction during fault-ride-through (FRT) of generating units connected to the grid via fully rated voltage-sourced converter (VSC generating units) on the behaviour and stability of the power system. The primary focus is on voltage support, transient stability and frequency stability. The investigation is carried out via computer simulations using a fictitious transmission system, based on German grid code requirements. The K-factor of the dependence of additional reactive current with voltage deviation, the method of active current limitation during FRT and the rate of active power recovery after fault clearance are varied. Results and influences are illustrated and discussed. They show that with an increasing number of converter-connected generating units in power systems, a careful selection of the parameters becomes very important. Insufficient grid code requirements may increase the risk of system instability. Conclusions are drawn and recommendations for optimal settings with respect to future development of grid codes are provided. The mechanism of loss of synchronism of VSC generating units because of inadequate current injection (current angle instability) is explained.
机译:这项研究调查了通过完全额定电压源转换器(VSC发电机)与电网连接的发电机组的故障穿越(FRT)期间注入额外的无功电流和有功电流减少对性能和稳定性的影响。电力系统。主要关注电压支持,瞬态稳定性和频率稳定性。这项调查是根据德国电网法规要求,使用虚拟传输系统通过计算机模拟进行的。改变了附加无功电流与电压偏差的关系的K因子,FRT期间的有功电流限制方法以及故障清除后的有功功率恢复率。结果和影响进行了说明和讨论。他们表明,随着电力系统中连接逆变器的发电机组数量的增加,仔细选择参数变得非常重要。网格代码要求不足可能会增加系统不稳定的风险。得出结论,并就网格代码的未来发展提供了最佳设置的建议。解释了由于电流注入不足(电流角不稳定)而导致VSC发电机组失去同步的机理。

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