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Investigation on fundamental issues of dynamic equivalent modeling of wind farms

机译:风电场动态等效建模基本问题的调查

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This paper takes the GE1.5MW DFIG wind turbine as an example, to simulate and analyze the transient response characteristics of the wind turbine under different wind velocities. Three critical issues related to dynamic equivalent modeling of wind farms are summarized by intensive investigations. Firstly, the wind turbines working on low wind speed are found to consume a large number of active power during the transient process, and their transient current and active power response curves sometimes are close to ones working on high wind speeds. Consequently, the wind turbines working on low wind speeds cannot be ignored casually for dynamic modeling of wind farms. Secondly, a counterintuitive phoneme, i.e. more clusterings is not necessarily to have higher equivalent accuracy, is found, since the transient current and active power curves of the wind turbines working on various wind speeds show significant and nonlinear differences in amplitude, fluctuations and transient response time. Finally, for a large wind farm with long collector lines and complicated configurations, the equivalent network impedance, calculated by the equivalent power loss rule, is seen to be able to guarantee the consistency only during the steady-state process instead of the transient one between the detailed and equivalent models. Studies about the dynamic characteristics of the collector network impedance should be emphasized.
机译:本文以GE1.5MW DFIG风力涡轮机为例,以模拟和分析不同风速下风力涡轮机的瞬态响应特性。密集调查总结了与动态等效建模相关的三个关键问题。首先,发现工作在瞬态过程中消耗大量有功功率的风力涡轮机,并且它们的瞬态电流和有效功率响应曲线有时靠近在高风速上工作的曲线。因此,对于风电场的动态建模,不能随意忽略工作的风力涡轮机无法忽略。其次,发现了违反思考的音素,即更多的聚类不一定具有更高的等效精度,因为在各种风速上工作的风力涡轮机的瞬态电流和有效功率曲线显示出显着和非线性差异,波动和瞬态响应时间。最后,对于长收集器线的大型风电场和复杂的配置,通过等效功率损耗规则计算的等效网络阻抗,可以看到仅在稳态过程中而不是瞬态一个之间的一致性详细和等同的模型。应强调关于收集器网络阻抗的动态特性的研究。

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