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Performance Assessment of a Wavelet-Based Differential Protection scheme in the Inter-Turn Fault Detection in a Transformer

机译:变压器匝间故障检测中基于小波的差动保护方案的性能评估

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Faults inside of the power transformer protection zone are commonly detected by the traditional phase and negative sequence differential elements. However, the detection of turn-to-turn and turn-to-earth faults is still a challenge for the traditional phase differential element, especially when the transformer operates with maximum load. Furthermore, the conventional algorithm usually is only able to detect turn-to-turn and turn-to-earth faults at a severe stage, when it involves a larger percentage of winding turns or phase-to-earth fault condition. This paper presents a comparison between the performances of existing conventional and wavelet-based differential protections regarding the detection of turn-to-turn and turn-to-earth faults in a power transformer under different loading scenarios. The wavelet units were more sensitive, faster, and less affected by the load variations, being a promising alternative for detecting transformer failures and preventing the fault evolution to more severe stages.
机译:电力变压器保护区内的故障通常通过传统的相序和负序差分元件来检测。然而,对于传统的相位差动元件,尤其是当变压器以最大负载运行时,匝间和接地故障的检测仍然是一个挑战。此外,当传统算法涉及较大比例的绕组匝数或相接地故障情况时,通常只能在严重阶段检测匝间和接地故障。本文就不同负载情况下电力变压器的匝间和接地故障的检测,对现有常规和基于小波的差动保护的性能进行了比较。小波单元更灵敏,更快,受负载变化的影响较小,是检测变压器故障并防止故障发展到更严重阶段的有前途的替代方法。

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