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Frequency response signature analysis for winding mechanical fault detection of power transformer using sensitivity method

机译:敏感性方法绕组机械故障检测频率响应鉴定分析

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Frequency Response Analysis (FRA) is an effective diagnosis approach to detect the winding mechanical faults in power transformer. For understanding the FRA signatures of transformer windings quantitatively, this paper uses the sensitivity method to study the characteristics of frequency response function (FRF) in equivalent circuit of transformer windings. The sensitivity expressions of FRF can be determined by adjoint network method and Tellegen theorem, which reflects the influence of electric parameter changes on FRA signature under winding faults and within a wide-frequency band (10 Hz to 2 MHz). To verify the sensitivity calculation, a two-winding transformer model with seven discs was established and taken as an example. The results indicate that FRF sensitivity data can provide the valuable insights about how the frequency responses are affected quantitatively with respect to the electric parameter changes or different winding faults. The method and sensitivity analysis discussed in this paper may be useful for diagnosing and predicting different mechanical deformation faults of transformer windings.
机译:频率响应分析(FRA)是一种有效的诊断方法,可以检测电力变压器中的绕组机械故障。为了了解变压器绕组的FRA签名,本文采用灵敏度方法研究变压器绕组等效电路中频率响应函数(FRF)的特性。 FRF的灵敏度表达可以通过伴随网络方法和Tellegen定理来确定,这反映了在绕组故障和宽频带(10Hz至2MHz)下FRA签名对FRA签名的影响。为了验证灵敏度计算,建立了一个具有七个光盘的双绕组变压器模型,并以示例为例。结果表明,FRF灵敏度数据可以提供关于如何相对于电参数变化或不同绕组故障定量影响频率响应的有价值的见解。本文讨论的方法和灵敏度分析可用于诊断和预测变压器绕组的不同机械变形故障。

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