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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Autonomous Voltage Security Regions to Prevent Cascading Trip Faults in Wind Turbine Generators
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Autonomous Voltage Security Regions to Prevent Cascading Trip Faults in Wind Turbine Generators

机译:自主电压安全区域,可防止风力发电机发生跳闸故障

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摘要

Cascading trip faults in large-scale wind power centralized integration areas bring new challenges to the secure operation of power systems. In order to deal with the complexity of voltage security regions and the computation difficulty, this paper proposes an autonomous voltage security region (AVSR) for each wind farm and the point of common coupling (PCC) substation, whose voltage can be controlled in a decoupled way. The computation of the AVSR can be completed using a stepwise search method exchanging voltage and power information between the control center and the wind farms. At each wind farm, an AVSR is determined to guarantee the normal operation of each wind turbine generator (WTG), while in the control center, each region is designed in order to guarantee secure operation both under normal conditions and after an N-1 contingency. A real system in Northern China was used to carry out case studies to verify the effectiveness of the AVSRs proposed, and good performance was demonstrated using the Monte Carlo method.
机译:大型风电集中集成区的级联跳闸故障给电力系统的安全运行带来了新的挑战。为了解决电压安全区域的复杂性和计算难度,提出了针对每个风电场和公共耦合点(PCC)变电站的自治电压安全区域(AVSR),其电压可以通过解耦来控制道路。可以使用逐步搜索方法在控制中心和风电场之间交换电压和功率信息来完成AVSR的计算。在每个风电场,均会确定AVSR以确保每个风力涡轮发电机(WTG)的正常运行,而在控制中心中,每个区域的设计均应确保在正常条件下和N-1事故发生后均能安全运行。使用中国北方的真实系统进行案例研究,以验证所提出的AVSR的有效性,并使用蒙特卡洛方法证明了良好的性能。

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