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Terminal Configuration and Sensitivity Analysis of Tank Current Measurement for FRA Diagnostics of Three-Phase Transformer Winding Model

机译:三相变压器绕组模型FRA诊断罐电流测量终端配置及敏感性分析

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This paper presents an in-depth analysis of tank current measurement for fault detection in a three-phase transformer winding model. In the first part of analysis, a unique fault detection sensitivity of tank current is presented for a three-phase winding model followed by determining the best terminal configuration to improve the sensitivity further. As a consequence of fault in three-phase winding model, it is found that tank current measurement always exhibits new additional resonance peaks. This feature is very unique for tank current response compared to the features in conventional FRA measurements. Further, an attempt is also made to quantify the fault-detection sensitivity of tank current by defining two indices. One index (named as "S-index") is defined by the number of new extra resonance peaks in tank current magnitude response as a consequence of fault. Another is the well-known "root mean square deviation" between the two responses before and after the fault. Higher the index values, more is the sensitivity for tank current to fault detection. Using these indices, this paper also determines that the fault detection sensitivity is more for tank current if the non-tested phase terminals are kept shorted and grounded. Simulation results and experimental measurements on a practical three-phase winding model demonstrate the facts too. For practical viability, authors would also like to extend the present work for actual transformers in near future.
机译:本文对三相变压器绕组模型中的故障检测进行了深入的分析。在分析的第一部分中,为三相绕组模型提出了罐电流的独特故障检测灵敏度,然后确定最佳终端配置以进一步提高灵敏度。由于三相绕组模型中的故障的结果,发现罐电流测量总是表现出新的额外共振峰。与传统FRA测量中的特征相比,该特征对于罐电流响应非常独特。此外,还尝试通过定义两个指数来量化罐电流的故障检测灵敏度。一个索引(命名为“S-Index”)由罐当前幅度响应中的新额外共振峰的数量定义为因故障。另一个是故障之前和之后的两个反应之间的众所周知的“均方方偏差”。较高索引值,罐电流对故障检测的敏感性越高。使用这些索引,本文还确定了如果未经过测试的相位终端保持短路并接地,则故障检测灵敏度更适用于罐电流。实用三相绕组模型的仿真结果与实验测量也展示了事实。为了实际可行性,作者还希望在不久的将来扩展实际变压器的本作工作。

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