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Online monitoring of power transformers using impulse frequency response analysis

机译:利用脉冲频率响应分析在线监测电力变压器

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With the recent development in smart grid systems, there is now a growing interest in the development of on-line monitoring techniques. This is to reduce the maintenance costs as well as minimizing the probability of unexpected outages, or potentially to prevent catastrophic failures in the electrical network. Monitoring of power transformers is essential for utilities as they are a critical asset within the network. Frequency response analysis (FRA) is a technique used to diagnose the mechanical integrity of a transformer winding; such diagnostic tools can be of enormous value for condition monitoring of power transformers. Over the past couple of decades, FRA has been utilized as an offline diagnosis method. Now there has been attention and interest to switch from offline to online FRA measurement techniques and recent literature shows there is an increasing research interest in this area. This paper proposes a bushing tap signal injection technique, which has the potential to be developed for in-service monitoring of power transformers. The proposed method uses an impulse as an input excitation signal. Signal injection and measurement are accomplished through high frequency CTs as an interface tool with the transformer bushing tap. FFT signal processing is used to obtain the frequency domain response. Bushing models were developed and experiments implementing the proposed approach were conducted. A single-phase 22kV/110V voltage transformer was used to study the feasibility of the proposed method.
机译:随着智能电网系统的最新发展,在线监测技术的发展现在引起了越来越多的兴趣。这是为了减少维护成本,并最大程度地减少意外中断的可能性,或者潜在地防止电网发生灾难性故障。电力变压器的监视对于公用事业至关重要,因为它们是网络中的重要资产。频率响应分析(FRA)是一种用于诊断变压器绕组机械完整性的技术。这样的诊断工具对于电力变压器状态监测具有巨大的价值。在过去的几十年中,FRA已被用作离线诊断方法。现在,已经有关注和兴趣从离线FRA测量技术转换为在线FRA测量技术,并且最近的文献表明,对该领域的研究兴趣越来越大。本文提出了一种套管抽头信号注入技术,它有可能被开发用于电力变压器的在线监测。所提出的方法使用脉冲作为输入激励信号。信号注入和测量是通过将高频CT作为变压器套管抽头的接口工具来完成的。 FFT信号处理用于获得频域响应。开发了套管模型,并进行了实施所建议方法的实验。采用单相22kV / 110V变压器研究了该方法的可行性。

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