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Modeling and Diagnostic Transformer Condition Using Sweep Frequency Response Analysis

机译:使用扫频响应分析的变压器状态建模和诊断

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Many methods have been developed to justify the condition of power transformer; one of the newest and well known is by using Sweep Frequency Response Analysis techniques. The basic concept of this method is by injecting a constant-amplitude of sinusoidal signal under various frequencies (sweep). The current result then compared to the former frequency response (under normal condition) to evaluate the phenomenon that may occur inside the transformer. On this paper, we develop a simulation using a 6/0.22 kV, 100kVA transformer to simulate 3 kinds of failures, e.g.: fault caused by an inter winding short circuit, axial winding deformation and radial winding deformation. The response curve movement is different depend on the type of disturbance. Short Circuits impact for example, gives the movement of curve at low frequency level. To model the transformer, an Impedance Curve of FRA is being used to find parameters of R (Resistive), L (Inductive) and C (Capacitive). This model is a helpful tool to analyze transformer condition since the parameters have represented the physic of transformer itself.
机译:已经开发出许多方法来证明电力变压器的状况。最新的和众所周知的方法之一是使用扫频响应分析技术。该方法的基本概念是通过在各种频率(扫描)下注入恒定幅度的正弦信号。然后将当前结果与以前的频率响应(在正常条件下)进行比较,以评估可能在变压器内部发生的现象。在本文中,我们使用6 / 0.22 kV 100kVA变压器进行了仿真,以仿真3种故障,例如:由绕组间短路,轴向绕组变形和径向绕组变形引起的故障。响应曲线的移动取决于干扰类型。例如,短路冲击会在低频水平下产生曲线的运动。为了对变压器建模,使用FRA的阻抗曲线来查找R(电阻),L(电感)和C(电容)的参数。该模型是分析变压器状况的有用工具,因为参数代表了变压器本身的物理特性。

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