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Study on the method of fault set for AC/DC system operation considering wind power

机译:考虑风电的AC / DC系统操作故障集方法研究

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摘要

With the rapid development of power system, wind power becomes an important generating way in AC/DC hybrid power grid. Due to the interference between the wind power and the AC network, the risk of DC system continuous commutation failure will be affected. In order to evaluate this effect reasonably, a method for running out of the fault set is presented in this study. Firstly, a distribution factor is proposed to determine the power line transfer after wind power or power line fault, the line with maximum load rate is chosen as the candidate failure lines; Secondly, the η short-circuit ratio and η effective short-circuit ratio indexes of the DC system is evaluated after every fau they are used to judge whether the cascading fault of AC system induces the transient overvoltage of the converter bus to lead to wind turbines to take off the power grid net. Thus, a cascading fault sequence of the AC system is formed, and a cascading fault set that causes the transient overvoltage of the converter bus is completed. Finally, the simulation results calculated by power system department-bonneville power administration show that when the commutation failure occurs in the DC system, the system runs out immediately, and the validity of the method is verified.
机译:随着电力系统的快速发展,风电成为AC / DC混合动力电网中的重要发电方式。由于风电和交流网络之间的干扰,DC系统连续换向故障的风险将受到影响。为了合理地评估这种效果,本研究提出了一种用于耗尽故障集的方法。首先,提出了一种分布因子来确定风力电源或电源线故障后的电力线传输,选择具有最大载荷率的线作为候选故障线;其次,在每个故障后评估DC系统的η短路比和η的有效短路比率;它们用于判断AC系统的级联故障是否会引起转换器总线的瞬态过电压,导致风力涡轮机脱掉电网网。因此,形成了AC系统的级联故障序列,并且完成了导致转换器总线的瞬态过电压的级联故障集。最后,通过电力系统部门 - Bonneville权力管理计算结果表明,当DC系统中发生换向故障时,系统立即耗尽,验证该方法的有效性。

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