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Effect of Capacitance Variation on Physical Characteristics of Ferroresonance Severity and Jump Phenomenon Based on Rudenberg Graphical Method

机译:基于Rudenberg图形方法的电容变化对成分谐波严重程度和跳跃现象的影响

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This paper performed the ferroresonance generation experiment with variation of capacitance based on Rudenberg graphical method. The voltage and current measurements were conducted on the transformer primary windings, source voltage, and capacitor. The trend of transformer voltage waveform was then analyzed by using bifurcation diagram. Moreover, the fast Fourier transform (FFT) was applied on the transformer primary voltage. The harmonics spectrum would show the ferroresonance mode. Then, its total harmonics distortion (THD) was calculated. The level of ferroresonance severity involving the values of transformer voltage and overvoltage level as well as THD was mapped based on the quadrant system. The results showed that the appearances of jump phenomenon and different ferroresonance severities could be explained more clearly by using Rudenberg graphical method. In addition, the proposed mapping of ferroresonance responses based on the quadrant system was successful not only to highlight the impact of given variables on ferroresonance but also to categorize more easily its danger level.
机译:本文采用基于Rudenberg图形方法的电容变化进行了成分谐波生成实验。电压和电流测量在变压器初级绕组,源电压和电容器上进行。然后通过使用分叉图分析变压器电压波形的趋势。此外,在变压器初级电压上施加快速傅里叶变换(FFT)。谐波频谱将显示Ferroreonance模式。然后,计算其总谐波失真(THD)。基于象限系统映射涉及变压器电压和过电压等值以及THD的分解源性严重程度。结果表明,通过使用Rudenberg图形方法可以更清楚地解释跳跃现象和不同的二旋曲严重性的外表。此外,基于象限系统的成分响应的建议映射不仅要突出给给定变量对Ferroreonance的影响,而且还可以更容易地对其危险程度进行分类。

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