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Under Load Tap Changer Diagnostics Based on Transformer DGA and DC Resistance Tests

机译:基于变压器DGA和直流电阻测试的有载分接开关诊断

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Under load tap changers (ULTC) have the most share of defects in transformers causing enormous expenses to utilities. ULTCs have been a weak part of any transformer as they deteriorate over time due to mechanical problems or contact wear from repeated operations. Erosion of the contacts over time is expected due to the nature of their function. Coking of the contacts causes overheating, which can cause thermal runaway. Diagnostics of ULTC is a key for any utility. The goal of diagnostics is to provide equipment owners with a ranking that prioritizes maintenance activities. This goes beyond the simple good/bad distinction, to provide some grading to permit different management options. Historically, DGAs in ULTCs have been considered rather insignificant due to the large amount of gases normally generated by the arcs. This has however been reconsidered the recent years and the opinion today is that quite a lot of information is gained by DGAs of ULTC oils. Dissolved gas analysis (DGA) has been proven to provide relevant information about transformer and tap changer health or faults. On the other hand, winding DC resistance measurement can be a complementary method for identification of defective connections triggered by DGA detected fault. In this paper, the DGA analysis is employed to analyze the gases generated in the transformer tank by a possible fault at selector switch tap. Diagnostics performed using both DGA and DC winding resistance tests for a 30MVA 63/20kV three-phase transformer with an in-tank ULTC. The results showed that combination of DGA and DC winding resistance is a simple and effective diagnostic technique to detect coking and carbonized contacts of the ULTC tap selector contacts. Trending of transformer tank DGA data and DC winding resistance proved to be reliable to trigger internal inspection, overhaul and repair of ULTC tap selector.
机译:有载分接开关(ULTC)在变压器中的缺陷最多,给公用事业造成了巨大的费用。 ULTC一直是任何变压器的薄弱环节,因为由于机械问题或反复操作而引起的触点磨损,它们会随着时间的流逝而劣化。由于其功能的性质,预计触点会随着时间的流逝而受到侵蚀。触点结焦会导致过热,从而导致热失控。 ULTC的诊断是任何实用程序的关键。诊断的目的是为设备所有者提供优先考虑维护活动的等级。这超出了简单的好/坏区分,提供了一些等级以允许使用不同的管理选项。从历史上看,由于电弧通常会产生大量气体,因此ULTC中的DGA一直被认为是微不足道的。然而,近年来已经重新考虑了这一点,今天的观点是,ULTC油的DGA获得了很多信息。溶解气体分析(DGA)已被证明可提供有关变压器和分接开关健康或故障的相关信息。另一方面,绕组直流电阻测量可以作为识别DGA检测到的故障触发的不良连接的一种补充方法。在本文中,DGA分析被用于分析由于选择开关分接头处可能存在的故障而在变压器油箱中产生的气体。使用DGA和DC绕组电阻测试对带有箱内ULTC的30MVA 63 / 20kV三相变压器进行的诊断。结果表明,DGA和直流绕组电阻的组合是检测ULTC分接选择器触点的焦化和碳化触点的一种简单有效的诊断技术。事实证明,变压器油箱DGA数据和DC绕组电阻的趋势可以可靠地触发ULTC分接选择器的内部检查,大修和维修。

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