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Power Transformer Frequency Response Analysis: Examination of Resonance Influences on Frequency Response Analysis Signals as The Traveling Wave is Transmitted Through a Power Transformer.

机译:电力变压器频率响应分析:检查行波通过电力变压器传输时谐振对频率响应分析信号的影响。

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摘要

Understanding the physics associated with power transformer frequency response analysis (FRA) is required to properly interpret FRA traces for correct diagnostics of a power transformer. Events occurring within a power transformer to in?uence FRA test traces are explained.;A complex Lorentzian curve shape is acquired by combining the solution of the electromagnetic wave equation with a resonance equation. The resultant solution provides a new de?nition of resonance observed within power transformer FRA traces. The windings in a power transformer are a transmission system to the FRA signal traveling electromagnetic wave. The traveling wave is the electro-motive force causing movement of charge within a resonant circuit. The moving charge within that resonant circuit emits its own traveling wave, which combines with the initial incident wave. The FRA traces demonstrate this in?uence of resonance on the original injected FRA signal.;A new mathematical model of the power transformer FRA traces is developed utilizing the complex Lorentzian curve. The in?uence of each resonant frequency is catalogued with three parameters: resonant frequency; spectral width; and, coefficient of influence. The developed mathematical model sums the influence of each resonance to a base trace to emulate the actual test trace.;Exploratory tests were conducted on a Delta - Grounded Wye power transformer to prove the developed concept and further explain FRA test results. Actual resonance within a power transformer was measured. Measured resonances were applied to the developed mathematical model, which resulted in a very close ?t to FRA test results. Multiple types of resonance were observed and other non-resonant in?uences on the FRA traces are explained.
机译:需要了解与电源变压器频率响应分析(FRA)相关的物理原理,才能正确解释FRA轨迹,以对电源变压器进行正确的诊断。解释了在电源变压器中发生的影响FRA测试轨迹的事件。通过将电磁波方程的解与共振方程相结合,获得了复杂的洛伦兹曲线形状。最终的解决方案提供了在电源变压器FRA迹线中观察到的谐振的新定义。电力变压器中的绕组是FRA信号传播电磁波的传输系统。行波是一种电动势,它导致谐振电路内的电荷移动。该谐振电路中的移动电荷会发出自己的行波,并与初始入射波结合。 FRA迹线表明了谐振对原始注入的FRA信号的影响。;利用复数Lorentzian曲线开发了电力变压器FRA迹线的新数学模型。每个谐振频率的影响可通过三个参数分类:谐振频率;光谱宽度以及影响系数。建立的数学模型总结了每个谐振对基本迹线的影响,以模拟实际的测试迹线。在Delta接地Wye电力变压器上进行了探索性测试,以证明所开发的概念并进一步解释FRA测试结果。测量了电源变压器内的实际谐振。将测得的共振应用于已开发的数学模型,这与FRA测试结果非常接近。观察到多种类型的共振,并解释了FRA迹线上的其他非共振影响。

著录项

  • 作者

    Bocovich, Michael.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Electrical engineering.;Engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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