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Modeling of wind turbine transformers for the analysis of resonant overvoltages

机译:风力发电机变压器建模,用于分析谐振过电压

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Switching transients and earth fault in a wind farm collection grid are two transient phenomena which can lead to resonant overvoltages at the LV terminal of the wind turbine transformers as well as inside HV and LV windings. The aim of this paper is to analyze the potential of the resonant overvoltage for various winding designs; disc, layer and pancake. In this way, the least vulnerable winding design can be recommended. For this aim, a 500 kVA transformer test object with the three aforementioned winding types has been designed and manufactured. Similar geometrical characteristics are used for all the three windings. By measuring the frequency response, the resonant frequencies can be found and the amplitude of the transferred voltage at these frequencies can be compared. The windings are also modeled in this paper in detail based on analytical functions. This RLC ladder model is verified by the measurements. The measurements and modeling results show that all winding designs have a resonant frequency around 800 kHz for the transferred voltage to LV terminal. Disc winding shows the lowest amplitude of the transferred overvoltages (6 p.u.). The layer winding, also has a resonance at 1.6 MHz with an even higher transferred overvoltage (80 p.u.). The frequency response of the pancake winding has characteristics of both disc and layer windings. In spite of having the lowest transferred overvoltage peak, the disc winding has many additional resonant frequencies in the range of 100 kHz-1 MHz. This could excite resonances in other parts of the winding. Consequently, pancake winding designs might be the most promising to minimize resonance situations.
机译:风电场集电电网中的开关瞬变和接地故障是两个瞬态现象,会导致风力涡轮机变压器的LV端子以及HV和LV绕组内部产生谐振过电压。本文的目的是分析各种绕组设计的谐振过电压的可能性。盘,层和煎饼。这样,可以建议最不易损坏的绕组设计。为了这个目的,已经设计并制造了具有上述三种绕组类型的500 kVA变压器测试对象。所有三个绕组都使用相似的几何特性。通过测量频率响应,可以找到谐振频率,并且可以比较这些频率下的转移电压幅度。本文还基于解析函数对绕组进行了详细建模。通过测量验证了该RLC梯形模型。测量和建模结果表明,对于将电压传输到LV端子,所有绕组设计都具有大约800 kHz的谐振频率。圆盘绕组显示出所转移的过电压的最低幅度(6 p.u.)。层绕组在1.6 MHz处也具有谐振,甚至具有更高的传输过电压(80 p.u.)。煎饼绕组的频率响应具有圆盘绕组和层绕组的特性。尽管具有最低的传递过电压峰值,但盘式绕组具有100 kHz-1 MHz范围内的许多其他谐振频率。这可能会激发绕组其他部分的共振。因此,煎饼绕组设计可能是最有希望将共振情况降至最低的设计。

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