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Influence factors on low-voltage operation characteristics of large-scale wind farms

机译:大型风电场低压运行特性的影响因素

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Although the low voltage ride through (LVRT) capability is no longer a difficulty for most of the existing wind turbines, the low voltage operation characteristics of different wind turbines and reactive power compensation devices varies a lot. The LVRT capability test result of a single wind turbine is not equal to the performance of a whole wind farm during gird fault, especially when the wind farm is considerably large or the grid is weak. As a result, the influence factors on the low voltage performance of large wind farms need to be studied. In this paper, electromechanical transient simulation models of doubly fed induction generator (DFIG) wind turbine and direct-driven permanent magnet synchronous generator (D-PMSG) wind turbine were built in power system simulation software DIgSILENT/PowerFactory. The accuracy of the models was validated by comparing simulation results with test results. On the basis of the validated models, a 100MW wind farm was modelled with DFIG and PMSG wind turbines respectively, and the LVRT performance was compared. The interrelationship between the control characteristics of reactive power compensation devices and the overvoltage after fault clearance was analyzed. It is concluded that, when grid fault occurs, the reactive power characteristics and the overvoltage ride through capability of wind turbines as well as the behavior of the reactive power compensation devices are important factors that may affect the LVRT capability of a wind farm.
机译:尽管对于大多数现有的风力涡轮机来说,低压穿越(LVRT)能力不再是一个难题,但不同风力涡轮机和无功功率补偿装置的低压运行特性差异很大。电网故障期间,单个风力涡轮机的LVRT能力测试结果不等于整个风力发电场的性能,特别是在风力发电场很大或电网薄弱时。因此,需要研究影响大型风电场低压性能的因素。本文在电力系统仿真软件DIgSILENT / PowerFactory中建立了双馈感应风力发电机(DFIG)和直接驱动永磁同步发电机(D-PMSG)风力发电机的机电暂态仿真模型。通过将仿真结果与测试结果进行比较,验证了模型的准确性。在验证的模型的基础上,分别使用DFIG和PMSG风力发电机对100MW风电场进行了建模,并比较了LVRT性能。分析了无功补偿装置控制特性与故障清除后过电压之间的相互关系。结论是,当发生电网故障时,风力发电机的无功功率特性和过电压穿越能力以及无功补偿装置的性能是可能影响风电场LVRT能力的重要因素。

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