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A Novel Offline to Online Approach to Detect Transformer Interturn Fault

机译:一种新颖的离线到在线检测变压器匝间故障的方法

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This paper presents an approach based on the use of transformer no-load and light load current harmonic analysis to detect the presence of an interturn fault at the incipient stage. The presence of fault is detected by performing a trend analysis of specific harmonic components and primary current magnitude. Transformer testing methods suffer from a common drawback of offline nature and require an expert opinion for accurate condition assessment. This paper presents a method that transforms no-load current harmonic analysis, which is a special test for transformer testing, into an online method at light load conditions. Thus, the necessity of complete shutdown and dependency on expert opinion is eliminated since it only requires one reference signature per phase. The proposed approach is verified for different vector groups of the three-phase core-type transformer and three independent units connected in star-star and for a fault on the low-voltage or high-voltage winding of the transformer. The presented experimentation shows that the proposed approach can detect the presence of a fault at an incipient stage involving less than 2% of turns and fault current up to 1 p.u. A case study is presented that validates the method for the transformer of a higher power rating.
机译:本文提出了一种基于变压器空载和轻载电流谐波分析的方法,以在初期阶段检测匝间故障的存在。通过执行特定谐波分量和一次电流幅度的趋势分析,可以检测到故障的存在。变压器测试方法存在离线特性的共同缺点,需要专家意见以进行准确的状态评估。本文提出了一种将空载电流谐波分析(一种用于变压器测试的特殊测试)转换为轻载条件下的在线方法的方法。因此,消除了完全关闭和依赖专家意见的必要性,因为每个阶段仅需要一个参考签名。针对三相铁心型变压器的不同矢量组和星形连接的三个独立单元,以及变压器的低压或高压绕组的故障,验证了该方法的有效性。提出的实验表明,所提出的方法可以在涉及不到2%匝数和高达1 p.u的故障电流的初期阶段检测故障的存在。提出了一个案例研究,该案例验证了额定功率更高的变压器的方法。

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